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REVIEW 4 major objections 3 minor 154 references

On an empirical method to build near-equilibrium axisymmetric and triaxial galaxy models

T0 review · 4 major / 3 minor · reviewed 2026-08-04 · deepseek-v4-flash

Pith's one-line read This paper claims that adding an Ornstein-Uhlenbeck noise process to the adiabatic squeezing technique yields virialized, near-equilibrium axisymmetric and triaxial galaxy models with prescribed axial ratios.

desk verdict A practical, honest methods paper that gives a priori flattening control via OU-noise-driven squeezing; just don't take 'near-equilibrium' literally — the phase-space support is unverified. read the letter →

arxiv 2608.00277 v1 pith:VI7FSCTW submitted 2026-07-31 astro-ph.GA

classification astro-ph.GA
keywords galaxydynamicsN-bodysimulationstriaxialmodelsadiabaticsqueezingOrnstein-Uhlenbeckprocessphase-spacedistributionhomeoidalexpansioninitialconditions
verification ladder T0 review T1 audit T2 compute T3 formal

The pith

A machine-rendered reading of the paper's core claim, the machinery that carries it, and where it could break.

The reading

Constructing self-consistent triaxial galaxy models is hard because a triaxial potential admits no general analytic distribution function. This paper introduces a numerical workaround: start from a spherical model with a known distribution function, then slowly deform the external potential while applying a stochastic forcing (an Ornstein-Uhlenbeck process) to each particle. The friction and noise balance is meant to keep the system near equilibrium while the deformation sets the desired axial ratios. Tests on Plummer-seeded models show the resulting flattened systems stay near virial equilibrium and preserve their flattening over about 100 dynamical times of self-consistent N-body evolution.

What carries the argument

The central mechanism is the combination of a time-dependent deformation of the potential (semi-axes b and c following an error-function schedule) with an Ornstein-Uhlenbeck process applied to each particle: a dynamical-friction term proportional to the local density and a Gaussian white noise renormalized with a factor depending on the specific energy and the time step. The noise is intended to enhance phase-space transport so orbits populate a near-invariant distribution, while the friction prevents net heating. The supporting analytic potentials come from the homeoidal expansion of Ciotti and Bertin (2005), which provides explicit formulas for small flattening.

What would settle it

Compute the energy distribution N(E) and velocity anisotropy of a generated model and compare with the Eddington distribution of the target density-potential pair; if they disagree significantly, or if the model's axial ratios drift by more than a few percent when evolved for several hundred dynamical times, the method is not producing true equilibrium initial conditions.

Watch

Extended reading notes

Core claim

The authors claim that an improved adiabatic squeezing protocol—where independent tracers are evolved in an adiabatically deforming external potential under an Ornstein-Uhlenbeck process instead of a live-N-body drag—can produce N-body realizations of axisymmetric and triaxial systems with a priori controlled axial ratios b/a and c/a. The deformed potentials are built from the Ciotti and Bertin (2005) homeoidal expansion of a spherical seed, giving analytic density-potential pairs for small flattening. The final particle distributions remain close to virial equilibrium (2K/|W| within about 3% after an initial transient) and, once evolved self-consistently with an N-body code, preserve their

Load-bearing premise

The whole scheme stands or falls on whether the added noise and friction actually mix the particles' phase space well enough that they settle into the deformed density's equilibrium distribution function rather than just being shaped by the potential.

Editorial extensions

If this is right

  • Non-spherical initial conditions for N-body simulations can be generated with user-specified axial ratios without solving the triaxial Jeans or Boltzmann problem.
  • The produced models are immediately usable as equilibrium start states: the virial ratio stays within about 3% of unity during the deformation and after switching to self-consistent evolution.
  • The flattening is preserved over about 100 dynamical times of self-consistent N-body integration, including for mildly flattened models where discreteness would typically drive sphericization.
  • The method is not tied to the Plummer seed; any spherical model with a known distribution function and a density that can be adiabatically deformed can be used.
  • The noise-enhanced transport appears sufficient to skip the relaxation phase seen in the original adiabatic squeezing technique.

Reading between the lines

Editorial extensions of the paper, not claims the author makes directly.

  • A strong test the paper leaves for future work is a direct check of the velocity anisotropy and the energy distribution of the final models against the target density's Eddington distribution; without that, the claim of 'near-equilibrium' rests only on density shape and virial ratio.
  • If the stochastic mixing is as effective as suggested, the method could be adapted to build rotating or barred models by biasing the noise or adding a net angular momentum, an extension the authors acknowledge.
  • The noise amplitude is fixed by a single parameter set from the local density; tuning it might give control over the final velocity dispersion or anisotropy, potentially making the method more powerful than simple adiabatic squeezing.
  • Because the method avoids solving for the distribution function, it might naturally generate models with some chaotic orbit content—an asset for studying orbit diffusion and chaos in triaxial potentials.
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Editorial analysis

A structured set of objections, weighed in public.

Desk editor's note, referee report, and a circularity audit.

Referee Report

4 major / 3 minor

Summary. The paper proposes a modification of the adiabatic squeezing technique for building axisymmetric and triaxial N-body initial conditions. Starting from a spherical Plummer model with known isotropic distribution function, the authors deform the potential to a CB05 homeoidally expanded density-potential pair while integrating orbits with an added dynamical-friction drag and Ornstein-Uhlenbeck noise (Eqs. 3-5). They then switch on self-gravity and evolve the N-body system. The paper reports that the target axial ratios are approximately reproduced, the virial ratio stays near unity, and the flattening is preserved for roughly 100 t_dyn in a few test cases, including prolate, oblate, triaxial, and toroidal geometries. The central claim is that this provides an empirical route to controlled near-equilibrium non-spherical initial conditions without solving the triaxial Jeans/Boltzmann problem.

Significance. If fully substantiated, the method would be practically useful: it offers explicit analytic accelerations for the CB05 family, does not require Schwarzschild orbit libraries, and appears to preserve shape over dynamical times. The analytical density-potential part is clean and the numerical tests show the expected qualitative behavior. However, the key assertion of 'near-equilibrium' is not backed by phase-space diagnostics; only density shape and virial ratio are checked. The paper is an honest 'preparatory work', but the load-bearing claim needs stronger evidence before it can support the stated conclusion.

major comments (4)
  1. [§2.1, §3.1] The abstract and title assert that the deformed models are 'near-equilibrium' and usable as N-body initial conditions. The stochastic process of Eqs. (3)-(5) is never shown to drive the ensemble to the equilibrium DF of the target triaxial potential. The noise amplitude in Eq. (5), Υ = sqrt(E ν / Δt), is chosen ad hoc, and no stationary-distribution or fluctuation-dissipation calculation is provided. The validation in §3.1 only measures projected axial ratios within the 70% mass ellipsoid and the virial ratio 2K/|W|. These are necessary but insufficient: systems with the correct density shape and virial ratio can still be far from dynamical equilibrium. I request velocity-space diagnostics, e.g. velocity anisotropy profiles, comparison with the target DF or with a Schwarzschild-model solution, and Jeans-equation residuals. Without them the near-equilibrium claim is unsupported.
  2. [§2.2–2.3, Fig. 1] For the CB05 triaxial models, an isotropic DF f(E) cannot support the target homeoidal density: it would give ρ = ρ(Φ), stratified on equipotentials, which are rounder than the equidensity surfaces, as visible in Fig. 1. Since the seed is sampled from an isotropic f(E) (Eq. 2), the noise/friction protocol must somehow produce the required anisotropic DF. The paper does not check whether the final velocity distribution corresponds to such a DF. This is not an a priori impossibility — the transport argument of Sartorello et al. (2025) could be invoked — but it needs demonstration. A concrete test would be to compute the velocity ellipsoid and verify the Jeans equations, or to compare the DF with an orbit-superposition model of the same target.
  3. [§3.2, Figs. 5–6] The N-body stability evidence is thin. Only two representative cases are shown (a prolate CB05 model and a toroidal model), with no quantitative definition of 'preserved reasonably well': no residual curves, no error bars, and no multiple noise seeds or random realizations. The claim of improvement over Holley-Bockelmann et al. (2001, 2002) is not supported by a controlled comparison under the same seed and target conditions. I recommend a table of final measured axial ratios versus target values for all models, with uncertainties, and a direct run with the original squeezing protocol to substantiate the 'better control' claim.
  4. [§4] The paper itself acknowledges that 'it remains to be determined how does starting from the same spherical seed density, supported by different velocity distributions, responds to the same deformation of the external smooth potential. In principle, the final orbital distribution of the flattened model could be considerably different if the seed has a tangentially or radially biased velocity distribution.' This is an admission that the method's phase-space outcome is not controlled. If the final distribution depends on the seed's velocity bias, the method does not generically produce the equilibrium model. At minimum, one anisotropic spherical seed (e.g. Osipkov-Merritt) should be tested, or the scope of the claim should be explicitly narrowed to isotropic seeds.
minor comments (3)
  1. [§2.2] Typo: 'can be obtained be obtained deforming' should read 'can be obtained by deforming'. Also 'At variance with' has an unnecessary capital A in §2.1, and 'fro small departures' in §1 should be 'from small departures'.
  2. [Fig. 2 caption] The caption lists the oblate case as 'ϵ=1; η=0.06'. According to Eq. (11), this would imply b/a=0, while the plotted b/a is close to 0.94. This is presumably a typo (possibly ϵ=0 or ϵ=0.06) and needs correction.
  3. [§3.1] The description of how axial ratios are computed could be more explicit: the paper refers to 'standard diagonalization procedure of the inertia tensor' but does not state the radial weight or the iteration scheme used. Also, the choice log Λ=10 is not discussed; a brief justification or sensitivity test would help.

Circularity Check

0 steps flagged · score 2.0 of 10

No circularity: flattening is imposed input, stability results are construction checks, and self-cited noise-transport work is external support.

full rationale

The derivation chain is not circular. The target flattening is an imposed input: Eq. (8) sets s_i(t) = s_i,0 + (s_i,f − s_i,0) Erf((t/τ)^2), so the final axial ratios are specified a priori. The subsequent measurements of b/a and c/a from the particle distribution (Figs. 2, 4–6) are therefore consistency checks on the construction, not predictions extracted from fitted parameters. No step equates an output quantity to an input by definition. The virial ratio 2K/|W| is likewise not tuned: the seed is sampled from the Eddington f(E) of a spherical Plummer equilibrium (Eqs. 2 and 23), so the system starts in virial equilibrium and, under an adiabatic deformation (Eq. 8) with gentle OU noise, remains near it; this is a physical consequence, not a circular fit. The self-citations to Sartorello et al. 2025 and Trani et al. 2026 are used for the OU integrator and for the empirical noise-enhanced-transport conjecture, and the latter is itself an external numerical result; the paper's central claim is independently tested by its own N-body evolution (Figs. 5–7). The admitted limitations — no velocity-space or Jeans-equation diagnostics, and the dependence of the final orbital distribution on the seed's velocity bias (Sect. 4) — are evidence of incompleteness or correctness risk, not of a circular reduction of the method to its inputs.

Assumptions & free parameters 4 free parameters · 5 assumptions · 0 invented entities

No new physical entities are introduced. The method's free parameters are numerical/ad hoc choices rather than fitted constants. The main epistemic load is carried by the noise-mixing conjecture and the first-order expansion of the homeoidal density-potential pairs.

free parameters (4)
  • Coulomb logarithm log Λ = 10
    Set by hand in Eq. (4); directly sets the drag coefficient ν in the stochastic equations of motion.
  • Deformation timescale τ = 50 t_dyn
    Chosen ad hoc in Eq. (8); controls adiabaticity of the squeeze and is not varied systematically.
  • Time step Δt = 0.01 (code units)
    Fixed for both external-potential integration and self-consistent N-body runs; no convergence study is reported.
  • Softening length ε_soft = 3 × 10^-3 a
    Chosen for the N-body tree code; a standard numerical parameter.
assumptions (5)
  • standard math Eddington inversion formula (Eq. 2) gives the spherical f(E) from the seed density-potential pair.
    Used to sample the spherical seed; standard result, but requires an isotropic velocity distribution.
  • domain assumption First-order homeoidal expansion of Ciotti & Bertin (2005) is accurate for the flattenings used.
    The deformed potentials/densities in Eqs. (16)-(22) are truncated at O(ε²+η²); the paper does not quantify the truncation error for η up to 0.1, though small flattening limits it.
  • domain assumption Noise-enhanced phase-space transport conjecture (Pogorelov & Kandrup 1999; Kandrup et al. 2000; Sartorello et al. 2025) drives orbits toward a nearly invariant distribution in the time-dependent potential.
    The OU process in Eqs. (3)-(5) is assumed to mix the distribution function sufficiently; no independent check of the final velocity distribution is made.
  • domain assumption Slow deformation (τ = 50 t_dyn) preserves the equilibrium nature of the system.
    Adiabaticity is invoked from the squeezing tradition; no action-conservation or adiabatic-invariant diagnostics are shown.
  • domain assumption The Plummer sphere is a representative seed for testing the method.
    Only the Plummer model (Eq. 23) is used; the authors themselves note that different seeds and velocity anisotropies may respond differently.

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Cite this review

Pith. "Pith review of On an empirical method to build near-equilibrium axisymmetric and triaxial galaxy models." pith.science (2026). https://pith.science/paper/VI7FSCTW

@misc{pith2026260800277,
  author       = {Pith},
  title        = {Pith review of: On an empirical method to build near-equilibrium axisymmetric and triaxial galaxy models},
  year         = {2026},
  howpublished = {\url{https://pith.science/paper/VI7FSCTW}},
  note         = {Machine review of arXiv:2608.00277}
}
abstract

We introduce a numerical technique to implement $N-$body realizations of axisymmetric and triaxial self-gravitating system starting from a spherical self-consistent models for which a phase-space distribution is known. The method is an improvement of the so-called adiabatic squeezing technique and allows one to have a better control of the effective ellipticities of the particle distribution and produces virialized systems that can be used as non-spherical initial conditions for $N-$body simulations. Some numerical stability tests are presented and discussed.

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Works this paper leans on

154 extracted references · 46 canonical work pages

  1. [3]

    , Bertin , G

    bchapter Ciotti , L. , Bertin , G. , Londrillo , P. : Self-consistent stellar dynamical tori . In: Bertin , G. , Farina , D. , Pozzoli , R. (eds.) Plasmas in the Laboratory and in the Universe: New Insights and New Challenges . American Institute of Physics Conference Series , vol. 703 , pp. 322 -- 325 ( 2004 ). 10.1063/1.1718475 bchapter

  2. [4]

    : Ellipsoidal Figures of Equilibrium , ( 1969 ) bbook

    bbook Chandrasekhar , S. : Ellipsoidal Figures of Equilibrium , ( 1969 ) bbook

  3. [8]

    , Ciotti , L

    barticle Di Cintio , P. , Ciotti , L. , Nipoti , C. : Relaxation of N-body systems with additive r^ - interparticle forces . MNRAS 431 , 3177 -- 13 ( 2013 ) 10.1093/mnras/stt403 https://arxiv.org/abs/1301.5165 arXiv:1301.5165 barticle

  4. [9]

    : A Family of Potential-Density Pairs for Spherical Galaxies and Bulges

    barticle Dehnen , W. : A Family of Potential-Density Pairs for Spherical Galaxies and Bulges . MNRAS 265 , 250 ( 1993 ) barticle

  5. [18]

    , Lifshitz , E.M

    bbook Landau , L.D. , Lifshitz , E.M. : The Classical Theory of Fields , ( 1975 ) bbook

  6. [21]

    : Quasisymplectic integrators for stochastic differential equations

    barticle Mannella , R. : Quasisymplectic integrators for stochastic differential equations . Phys.Rev.E 69 ( 4 ), 041107 ( 2004 ) 10.1103/PhysRevE.69.041107 https://arxiv.org/abs/cond-mat/0312109 cond-mat/0312109 barticle

  7. [25]

    : On the Brownian Motion

    barticle Ornstein , L.S. : On the Brownian Motion . Koninklijke Nederlandse Akademie van Wetenschappen Proceedings Series B Physical Sciences 21 , 96 -- 108 ( 1919 ) barticle

  8. [26]

    : Spherical systems of gravitating bodies with an ellipsoidal velocity distribution

    barticle Osipkov , L.P. : Spherical systems of gravitating bodies with an ellipsoidal velocity distribution . Soviet Astronomy Letters 5 , 42 -- 44 ( 1979 ) barticle

Show all 154 references
  1. [32]

    , Kandrup , H.E

    barticle Sideris , I.V. , Kandrup , H.E. : Noise-enhanced Parametric Resonance in Perturbed Galaxies . ApJ 602 , 678 -- 684 ( 2004 ) 10.1086/381052 https://arxiv.org/abs/astro-ph/0308481 astro-ph/0308481 barticle

  2. [35]

    , Kandrup , H.E

    botherref Terzic , B. , Kandrup , H.E. : Noise-Induced Phase Space Transport in Time-Periodic Hamiltonian Systems . ArXiv Astrophysics e-prints (2003) https://arxiv.org/abs/astro-ph/0312434 astro-ph/0312434 botherref

  3. [40]

    ApJ , keywords =

    Models of Cuspy Triaxial Galaxies. ApJ , keywords =. doi:10.1086/319453 , archivePrefix =. astro-ph/0011504 , primaryClass =

  4. [41]

    A&A , keywords =

    Chaos in violent relaxation dynamics: Disentangling micro- and macro-chaos in numerical experiments of dissipationless collapse. A&A , keywords =. doi:10.1051/0004-6361/202554833 , archivePrefix =. 2503.22479 , primaryClass =

  5. [42]

    Astronomische Nachrichten , keywords =

    An instability in triaxial stellar systems. Astronomische Nachrichten , keywords =. doi:10.1002/asna.200811071 , archivePrefix =. 0809.0161 , primaryClass =

  6. [43]

    MNRAS , year = 1916, month = may, volume =

    The distribution of stars in globular clusters. MNRAS , year = 1916, month = may, volume =. doi:10.1093/mnras/76.7.572 , adsurl =

  7. [44]

    Journal of Cosmology and Astroparticle Physics , abstract =

    Thomas Lacroix and Martin Stref and Julien Lavalle , title =. Journal of Cosmology and Astroparticle Physics , abstract =. 2018 , month =. doi:10.1088/1475-7516/2018/09/040 , url =

  8. [45]

    MNRAS , keywords =

    Two-integral distribution functions for axisymmetric galaxies. MNRAS , keywords =. doi:10.1093/mnras/262.2.401 , adsurl =

  9. [46]

    Soviet Astronomy Letters , year = 1979, volume = 5, pages =

    Spherical systems of gravitating bodies with an ellipsoidal velocity distribution. Soviet Astronomy Letters , year = 1979, volume = 5, pages =

  10. [47]

    AJ , keywords =

    Spherical stellar systems with spheroidal velocity distributions. AJ , keywords =. doi:10.1086/113810 , adsurl =

  11. [48]

    Celestial Mechanics and Dynamical Astronomy , keywords =

    Anisotropic distribution functions for spherical galaxies. Celestial Mechanics and Dynamical Astronomy , keywords =. doi:10.1007/s10569-006-9062-5 , archivePrefix =. 0812.4898 , primaryClass =

  12. [49]

    MNRAS , keywords =

    An analytic inversion for anisotropic spherical galaxies. MNRAS , keywords =. doi:10.1093/mnras/253.3.414 , adsurl =

  13. [50]

    ApJ , keywords =

    A numerical model for a triaxial stellar system in dynamical equilibrium. ApJ , keywords =. doi:10.1086/157282 , adsurl =

  14. [51]

    II - Some dynamical features of the model

    A numerical model for a triaxial stellar system in dynamical equilibrium. II - Some dynamical features of the model. ApJs , keywords =. doi:10.1086/190676 , adsurl =

  15. [52]

    ApJ , keywords =

    Triaxial Galaxies with Cusps. ApJ , keywords =. doi:10.1086/176957 , archivePrefix =. astro-ph/9511021 , primaryClass =

  16. [53]

    ApJ , keywords =

    Effects of Wandering on the Coalescence of Black Hole Binaries in Galactic Centers. ApJ , keywords =. doi:10.1086/375552 , archivePrefix =. astro-ph/0302573 , primaryClass =

  17. [54]

    ApJ , keywords =

    Dynamics of a Massive Black Hole at the Center of a Dense Stellar System. ApJ , keywords =. doi:10.1086/340224 , archivePrefix =. astro-ph/0107287 , primaryClass =

  18. [55]

    , keywords =

    Brownian Motion in Gravitationally Interacting Systems. , keywords =. doi:10.1103/PhysRevLett.88.121103 , archivePrefix =. astro-ph/0202257 , primaryClass =

  19. [56]

    MNRAS , keywords =

    Effects of massive black holes on dense stellar systems. MNRAS , keywords =. doi:10.1093/mnras/176.3.633 , adsurl =

  20. [57]

    ApJ , keywords =

    Brownian Motion of a Massive Binary. ApJ , keywords =. doi:10.1086/321550 , archivePrefix =. astro-ph/0012264 , primaryClass =

  21. [58]

    , keywords =

    Massive black hole binaries in active galactic nuclei. , keywords =. doi:10.1038/287307a0 , adsurl =

  22. [59]

    Hardening in a fixed stellar background

    The dynamical evolution of massive black hole binaries I. Hardening in a fixed stellar background. , keywords =. doi:10.1016/S1384-1076(96)00003-6 , archivePrefix =. astro-ph/9601092 , primaryClass =

  23. [60]

    Self-consistent N-body integrations

    The dynamical evolution of massive black hole binaries II. Self-consistent N-body integrations. , keywords =. doi:10.1016/S1384-1076(97)00039-0 , archivePrefix =. astro-ph/9706298 , primaryClass =

  24. [61]

    European Physical Journal Plus , keywords =

    Expression of the Holtsmark function in terms of hypergeometric _ 2 F _ 2 and Airy Bi functions. European Physical Journal Plus , keywords =. doi:10.1140/epjp/s13360-020-00248-4 , archivePrefix =. 2001.11893 , primaryClass =

  25. [62]

    Kozlitin, I. A. Simulating the Holtsmark distribution by the Monte Carlo method. Mathematical Models and Computer Simulations. 2011. doi:10.1134/S207004821101008X

  26. [63]

    IAU Symposium , year = 2020, editor =

    The Chandrasekhar Spitzer controversy and the (ir)relevance of distant interactions. IAU Symposium , year = 2020, editor =. doi:10.1017/S1743921319006768 , adsurl =

  27. [64]

    ApJs , keywords =

    Dynamics and Interactions of Binaries and Neutron Stars in Globular Clusters. ApJs , keywords =. doi:10.1086/192199 , archivePrefix =. astro-ph/9412078 , primaryClass =

  28. [65]

    IAU Symposium , year = 2020, editor =

    Brownian motion of supermassive black holes in galaxy cores. IAU Symposium , year = 2020, editor =. doi:10.1017/S1743921319007221 , archivePrefix =. 1908.04283 , primaryClass =

  29. [66]

    1958", month =

    Distribution of Gravitational Field at the Center of Globular and Spherical Clusters. ApJ , year = "1958", month = "Jul", volume =. doi:10.1086/146524 , adsurl =

  30. [67]

    ApJ , keywords =

    Blue Straggler Bimodality: A Brownian Motion Model. ApJ , keywords =. 2018. doi:10.3847/1538-4357/aae52c , archivePrefix =. 1810.11023 , primaryClass =

  31. [68]

    A&A , keywords =

    Taking apart the dynamical clock: Fat-tailed dynamical kicks shape the blue-straggler star bimodality. A&A , keywords =. submitted 2020

  32. [69]

    MNRAS , keywords =

    N-body chaos and the continuum limit in numerical simulations of self-gravitating systems, revisited. MNRAS , keywords =. doi:10.1093/mnras/stz2531 , archivePrefix =. 1901.08981 , primaryClass =

  33. [70]

    ApJ , keywords =

    Discovery of a Boxy Peanut-shaped Bulge in the Near-Infrared. ApJ , keywords =. doi:10.1086/304054 , archivePrefix =. astro-ph/9609042 , primaryClass =

  34. [71]

    MNRAS , year = 1993, month = apr, volume =

    The photometric properties of 'box/peanut' galactic bulges. MNRAS , year = 1993, month = apr, volume =. doi:10.1093/mnras/261.4.718 , adsurl =

  35. [72]

    MNRAS , keywords =

    The nature of 'box' and 'peanut' shaped galactic bulges. MNRAS , keywords =. doi:10.1093/mnras/229.4.691 , adsurl =

  36. [73]

    MNRAS , keywords =

    Structure of box-shaped bulges and other spheroidal components. MNRAS , keywords =. doi:10.1093/mnras/214.4.449 , adsurl =

  37. [74]

    , keywords =

    A search for box- and peanut-shaped bulges. , keywords =. doi:10.1086/113980 , adsurl =

  38. [75]

    ApJ , keywords =

    Rotation of the bulge components of disk galaxies. ApJ , keywords =. doi:10.1086/159923 , adsurl =

  39. [76]

    The relative importance of the 3D families of periodic orbits bifurcating at the vertical 2:1 resonance

    Building CX peanut-shaped disk galaxy profiles. The relative importance of the 3D families of periodic orbits bifurcating at the vertical 2:1 resonance. A&A , keywords =. doi:10.1051/0004-6361/201731114 , archivePrefix =. 1804.06199 , primaryClass =

  40. [77]

    Properties of non-periodic orbits

    The phase space of boxy-peanut and X-shaped bulges in galaxies - I. Properties of non-periodic orbits. MNRAS , keywords =. doi:10.1093/mnras/stu1988 , archivePrefix =. 1410.4921 , primaryClass =

  41. [78]

    The relation between face-on and edge-on boxiness

    The phase space of boxy-peanut and X-shaped bulges in galaxies - II. The relation between face-on and edge-on boxiness. MNRAS , keywords =. doi:10.1093/mnras/stu1970 , archivePrefix =. 1410.4923 , primaryClass =

  42. [79]

    MNRAS , keywords =

    Boxy/peanut `bulges': comparing the structure of galaxies with the underlying families of periodic orbits. MNRAS , keywords =. doi:10.1111/j.1365-2966.2005.09922.x , archivePrefix =. astro-ph/0512244 , primaryClass =

  43. [80]

    Boxy/peanut edge-on profiles

    Orbital dynamics of three-dimensional bars - III. Boxy/peanut edge-on profiles. MNRAS , keywords =. doi:10.1046/j.1365-8711.2002.05943.x , adsurl =

  44. [81]

    A&A , keywords =

    A simple method to construct exact density-potential pairs from a homeoidal expansion. A&A , keywords =. doi:10.1051/0004-6361:20042123 , archivePrefix =. astro-ph/0504063 , primaryClass =

  45. [82]

    Plasmas in the Laboratory and in the Universe: New Insights and New Challenges , year = 2004, editor =

    Self-consistent stellar dynamical tori. Plasmas in the Laboratory and in the Universe: New Insights and New Challenges , year = 2004, editor =. doi:10.1063/1.1718475 , archivePrefix =. astro-ph/0312489 , primaryClass =

  46. [83]

    , keywords =

    The Centers of Early-Type Galaxies with HST.I.An Observational Survey. , keywords =. doi:10.1086/117719 , adsurl =

  47. [84]

    , keywords =

    Galaxies with a Central Minimum in Stellar Luminosity Density. , keywords =. doi:10.1086/342932 , archivePrefix =. astro-ph/0206122 , primaryClass =

  48. [85]

    ApJL , keywords =

    A Very Fast and Momentum-conserving Tree Code. ApJL , keywords =. doi:10.1086/312724 , archivePrefix =. astro-ph/0003209 , primaryClass =

  49. [86]

    Ellipsoidal figures of equilibrium

  50. [87]

    ApJ , keywords =

    Some flattened isothermal models of galaxies. ApJ , keywords =. doi:10.1086/160190 , adsurl =

  51. [88]

    The classical theory of fields

  52. [89]

    MNRAS , archivePrefix = "arXiv", eprint =

    Radially anisotropic systems with r ^ -α forces - II: radial-orbit instability. MNRAS , archivePrefix = "arXiv", eprint =. doi:10.1093/mnras/stx600 , adsurl =

  53. [91]

    Celestial Mechanics and Dynamical Astronomy , keywords =

    Symplectic integrators and their application to dynamical astronomy. Celestial Mechanics and Dynamical Astronomy , keywords =. doi:10.1007/BF00048986 , adsurl =

  54. [92]

    Nonlinearity , year =

    McLachlan, Robert I and Atela, Pau , title =. Nonlinearity , year =

  55. [93]

    ApJ , eprint =

    Dynamics of a Massive Black Hole at the Center of a Dense Stellar System. ApJ , eprint =. doi:10.1086/340224 , adsurl =

  56. [94]

    A&A , keywords =

    Dynamical friction on extended objects. A&A , keywords =

  57. [95]

    ApJ , keywords =

    Dynamical Friction and the Evolution of Supermassive Black Hole Binaries: The Final Hundred-parsec Problem. ApJ , keywords =. doi:10.3847/1538-4357/aa6b58 , archivePrefix =. 1611.06573 , primaryClass =

  58. [96]

    Stochastic Processes in Physics and Chemistry

  59. [97]

    Mathematical methods for physicists 6th ed

  60. [98]

    MNRAS , keywords =

    A simple model for the distribution of light in spherical galaxies. MNRAS , keywords =. doi:10.1093/mnras/202.4.995 , adsurl =

  61. [99]

    ApJ , keywords =

    An analytical model for spherical galaxies and bulges. ApJ , keywords =. doi:10.1086/168845 , adsurl =

  62. [100]

    The spherical case

    Two-component Jaffe models with a central black hole - I. The spherical case. MNRAS , archivePrefix = "arXiv", eprint =. doi:10.1093/mnras/stx2771 , adsurl =

  63. [101]

    MNRAS , year = 1911, month = mar, volume = 71, pages =

    On the problem of distribution in globular star clusters. MNRAS , year = 1911, month = mar, volume = 71, pages =. doi:10.1093/mnras/71.5.460 , adsurl =

  64. [102]

    Annalen der Physik , year = 1919, volume = 363, pages =

    \"U ber die Verbreiterung von Spektrallinien. Annalen der Physik , year = 1919, volume = 363, pages =. doi:10.1002/andp.19193630702 , adsurl =

  65. [103]

    Springer Series in Synergetics, Berlin: Springer, |c1994, 2nd ed

    Handbook of stochastic methods for physics, chemistry and the natural sciences. Springer Series in Synergetics, Berlin: Springer, |c1994, 2nd ed. 1985. Corr. 3rd printing 1994 , year = 1994, adsurl =

  66. [104]

    , year = 1980, month = jul, volume = 63, pages =

    Stochastic gravitational fluctuations in a self-consistent mean field theory. , year = 1980, month = jul, volume = 63, pages =. doi:10.1016/0370-1573(80)90015-0 , adsurl =

  67. [105]

    Soviet Astronomy Letters , year = 1986, month = aug, volume = 12, pages =

    The Close-Encounter Force Function. Soviet Astronomy Letters , year = 1986, month = aug, volume = 12, pages =

  68. [106]

    Journal of Physics Condensed Matter , eprint =

    The Holtsmark distribution of forces and its role in gravitational clustering. Journal of Physics Condensed Matter , eprint =. doi:10.1088/0953-8984/14/9/303 , adsurl =

  69. [107]

    EPL (Europhysics Letters) , eprint =

    Clustering in gravitating N-body systems. EPL (Europhysics Letters) , eprint =. doi:10.1209/epl/i2002-00462-x , adsurl =

  70. [108]

    ApJ , archivePrefix = "arXiv", eprint =

    Dynamical Friction in Cuspy Galaxies. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1088/0004-637X/785/1/51 , adsurl =

  71. [109]

    MNRAS , archivePrefix = "arXiv", eprint =

    The globular cluster migratory origin of nuclear star clusters. MNRAS , archivePrefix = "arXiv", eprint =. doi:10.1093/mnras/stu1683 , adsurl =

  72. [110]

    MNRAS , eprint =

    Chaos and chaotic phase mixing in cuspy triaxial potentials. MNRAS , eprint =. doi:10.1046/j.1365-8711.2003.06985.x , adsurl =

  73. [111]

    ArXiv Astrophysics e-prints , eprint =

    Noise-Induced Phase Space Transport in Time-Periodic Hamiltonian Systems. ArXiv Astrophysics e-prints , eprint =

  74. [112]

    ApJ , eprint =

    Noise-enhanced Parametric Resonance in Perturbed Galaxies. ApJ , eprint =. doi:10.1086/381052 , adsurl =

  75. [113]

    Stochastic Effects in Physical Systems

    San Miguel, Maxi and Toral, Ra \'u l. Stochastic Effects in Physical Systems. Instabilities and Nonequilibrium Structures VI. 2000. doi:10.1007/978-94-011-4247-2_2

  76. [114]

    Phys.Rev.E , eprint =

    Quasisymplectic integrators for stochastic differential equations. Phys.Rev.E , eprint =. doi:10.1103/PhysRevE.69.041107 , adsurl =

  77. [115]

    2006 , doi =

    Numerical Stochastic Integration for Quasi-Symplectic Flows , journal =. 2006 , doi =

  78. [116]

    and Lenane, I

    Burrage, K. and Lenane, I. and Lythe, G. , title =. SIAM Journal on Scientific Computing , volume =. 2007 , doi =

  79. [117]

    ApJ , archivePrefix = "arXiv", eprint =

    Dynamical Friction in Multi-component Evolving Globular Clusters. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1088/0004-637X/795/2/169 , adsurl =

  80. [118]

    ApJl , archivePrefix = "arXiv", eprint =

    A Displaced Supermassive Black Hole in M87. ApJl , archivePrefix = "arXiv", eprint =. doi:10.1088/2041-8205/717/1/L6 , adsurl =

  81. [119]

    Dynamics of Galaxies, by Giuseppe Bertin, Cambridge, UK: Cambridge University Press, 2014 , year = 2014, month = may, adsurl =

    Dynamics of Galaxies. Dynamics of Galaxies, by Giuseppe Bertin, Cambridge, UK: Cambridge University Press, 2014 , year = 2014, month = may, adsurl =

  82. [120]

    Galactic Dynamics: Second Edition, by James Binney and Scott Tremaine

    Galactic Dynamics: Second Edition. Galactic Dynamics: Second Edition, by James Binney and Scott Tremaine. ISBN 978-0-691-13026-2 (HB). Published by Princeton University Press, Princeton, NJ USA, 2008. , year = 2008, publisher =

  83. [121]

    Probing the Role of Dynamical Friction in Shaping the BSS Radial Distribution. I. Semi-analytical Models and Preliminary N-body Simulations. ApJ , keywords =. 2015. doi:10.1088/0004-637X/799/1/44 , archivePrefix =. 1411.2161 , primaryClass =

  84. [122]

    MNRAS , archivePrefix = "arXiv", eprint =

    Brownian motion of massive black hole binaries and the final parsec problem. MNRAS , archivePrefix = "arXiv", eprint =. doi:10.1093/mnras/stw1372 , adsurl =

  85. [123]

    ApJ , year = 1941, month = nov, volume = 94, pages =

    A Statistical Theory of Stellar Encounters. ApJ , year = 1941, month = nov, volume = 94, pages =. doi:10.1086/144357 , adsurl =

  86. [124]

    The Statistics of the Gravitational Field Arising from a Random Distribution of Stars. I. The Speed of Fluctuations. ApJ , year = 1942, month = may, volume = 95, pages =. doi:10.1086/144420 , adsurl =

  87. [125]

    ApJ , year = 1943, month = jan, volume = 97, pages =

    The Statistics of the Gravitational Field Arising from a Random Distribution of Stars II. ApJ , year = 1943, month = jan, volume = 97, pages =. doi:10.1086/144487 , adsurl =

  88. [126]

    Dynamical Friction. I. General Considerations: the Coefficient of Dynamical Friction. ApJ , year = 1943, month = mar, volume = 97, pages =. doi:10.1086/144517 , adsurl =

  89. [127]

    Reviews of Modern Physics , year = 1943, month = jan, volume = 15, pages =

    Stochastic Problems in Physics and Astronomy. Reviews of Modern Physics , year = 1943, month = jan, volume = 15, pages =. doi:10.1103/RevModPhys.15.1 , adsurl =

  90. [128]

    The Statistics of the Gravitational Field Arising from a Random Distribution of Stars. III. The Correlations in the Forces Acting at Two Points Separated by a Finite Distance. ApJ , year = 1944, month = jan, volume = 99, pages =. doi:10.1086/144587 , adsurl =

  91. [129]

    The Stochastic Variation of the Force Acting on a Star

    The Statistics of the Gravitational Field Arising from a Random Distribution of Stars.IV. The Stochastic Variation of the Force Acting on a Star. ApJ , year = 1944, month = jan, volume = 99, pages =. doi:10.1086/144588 , adsurl =

  92. [130]

    Reviews of Modern Physics , year = 1949, month = jul, volume = 21, pages =

    Brownian Motion, Dynamical Friction, and Stellar Dynamics. Reviews of Modern Physics , year = 1949, month = jul, volume = 21, pages =. doi:10.1103/RevModPhys.21.383 , adsurl =

  93. [131]

    ArXiv e-prints , archivePrefix = "arXiv", eprint =

    Classical particle scattering for power-law two-body potentials. ArXiv e-prints , archivePrefix = "arXiv", eprint =

  94. [132]

    MNRAS , keywords =

    Self-consistent two-component models of elliptical galaxies. MNRAS , keywords =. doi:10.1093/mnras/255.4.561 , adsurl =

  95. [133]

    ApJ , eprint =

    The Analytical Distribution Function of Anisotropic Two-Component Hernquist Models. ApJ , eprint =. doi:10.1086/177954 , adsurl =

  96. [134]

    A&A , keywords =

    Beyond the largest Lyapunov exponent: Entropy-based diagnostics of chaos in H \'e non-Heiles and N-body dynamics. A&A , keywords =. doi:10.1051/0004-6361/202660069 , archivePrefix =. 2603.24675 , primaryClass =

  97. [135]

    MNRAS , keywords =

    A counterpart to the radial-orbit instability in triaxial stellar systems. MNRAS , keywords =. doi:10.1111/j.1365-2966.2009.15342.x , archivePrefix =. 0901.4485 , primaryClass =

  98. [136]

    MNRAS , keywords =

    Dissipationless collapse, weak homology and central cores of elliptical galaxies. MNRAS , keywords =. doi:10.1111/j.1365-2966.2006.10531.x , archivePrefix =. astro-ph/0605260 , primaryClass =

  99. [137]

    Memorie della Societa Astronomica Italiana Supplementi , keywords =

    A parallel implementation of a new fast algorithm for N-body simulations. Memorie della Societa Astronomica Italiana Supplementi , keywords =. doi:10.48550/arXiv.astro-ph/0212130 , archivePrefix =. astro-ph/0212130 , primaryClass =

  100. [138]

    ApJ , eprint =

    Modeling Elliptical Galaxies: Phase-Space Constraints on Two-Component ( _ 1 , _ 2 ) Models. ApJ , eprint =. doi:10.1086/307478 , adsurl =

  101. [139]

    MNRAS , eprint =

    Two-body relaxation in modified Newtonian dynamics. MNRAS , eprint =. doi:10.1111/j.1365-2966.2004.07779.x , adsurl =

  102. [140]

    American Institute of Physics Conference Series , year = 2010, series =

    Dynamical Friction from field particles with a mass spectrum. American Institute of Physics Conference Series , year = 2010, series =. doi:10.1063/1.3460114 , adsurl =. arXiv:1001.3531 , editor =

  103. [141]

    MNRAS , archivePrefix = "arXiv", eprint =

    Relaxation of N-body systems with additive r^ - interparticle forces. MNRAS , archivePrefix = "arXiv", eprint =. doi:10.1093/mnras/stt403 , adsurl =

  104. [142]

    arXiv:1408.3857 , adsurl =

    Dynamics of heterogeneous clusters under intense laser fields. arXiv:1408.3857 , adsurl =

  105. [143]

    MNRAS , keywords =

    Made-to-measure models of the Galactic box/peanut bulge: stellar and total mass in the bulge region. MNRAS , keywords =. doi:10.1093/mnras/stv058 , archivePrefix =. 1502.00633 , primaryClass =

  106. [144]

    MNRAS , keywords =

    Secular evolution and cylindrical rotation in boxy/peanut bulges: impact of initially rotating classical bulges. MNRAS , keywords =. doi:10.1093/mnras/stt029 , archivePrefix =. 1212.2317 , primaryClass =

  107. [145]

    The Messenger , year = 2013, month = dec, volume =

    The Milky Way's Box/Peanut Bulge: Measuring its Three-dimensional Structure Using the VVV Survey. The Messenger , year = 2013, month = dec, volume =

  108. [146]

    and Nipoti,C

    Di Cintio,Pierfrancesco and Ciotti,L. and Nipoti,C. , title =. Journal of Plasma Physics , volume =. 2015 , issn =. doi:10.1017/S0022377815000689 , URL =

  109. [147]

    MNRAS , year = 1993, month = nov, volume = 265, pages =

    A Family of Potential-Density Pairs for Spherical Galaxies and Bulges. MNRAS , year = 1993, month = nov, volume = 265, pages =

  110. [148]

    ApJ , archivePrefix = "arXiv", eprint =

    Dynamical Friction and the Evolution of Supermassive Black Hole Binaries: The Final Hundred-parsec Problem. ApJ , archivePrefix = "arXiv", eprint =. doi:10.3847/1538-4357/aa6b58 , adsurl =

  111. [149]

    doi:10.1017/9780511736117 , adsurl =

    Introduction to Stellar Dynamics. doi:10.1017/9780511736117 , adsurl =

  112. [150]

    EPL (Europhysics Letters) , eprint =

    Gravitational force distribution in fractal structures. EPL (Europhysics Letters) , eprint =. doi:10.1209/epl/i1999-00235-7 , adsurl =

  113. [151]

    ApJ , archivePrefix = "arXiv", eprint =

    Ejection of Supermassive Black Holes from Galaxy Cores. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1086/586877 , adsurl =

  114. [152]

    MNRAS , archivePrefix = "arXiv", eprint =

    Collisionless loss-cone refilling: there is no final parsec problem. MNRAS , archivePrefix = "arXiv", eprint =. doi:10.1093/mnras/stw2528 , adsurl =

  115. [153]

    MNRAS , archivePrefix = "arXiv", eprint =

    Relativistic dynamics of stars near a supermassive black hole. MNRAS , archivePrefix = "arXiv", eprint =. doi:10.1093/mnras/stu1126 , adsurl =

  116. [154]

    Bulletin of the Astronomical Society of India , archivePrefix = "arXiv", eprint =

    Problems of collisional stellar dynamics. Bulletin of the Astronomical Society of India , archivePrefix = "arXiv", eprint =

  117. [155]

    Journal of Quantitative Spectroscopy and Radiative Transfer , volume = 36, number = "1", pages =

    Rational approximations for the holtsmark distribution, its cumulative and derivative. Journal of Quantitative Spectroscopy and Radiative Transfer , volume = 36, number = "1", pages =. doi:http://dx.doi.org/10.1016/0022-4073(86)90011-7

  118. [156]

    , keywords =

    Numerical simulation for stellar velocity dispersion and hardness of encounters between stars and perturbers. , keywords =

  119. [157]

    MNRAS , eprint =

    Chaotic mixing in noisy Hamiltonian systems. MNRAS , eprint =. doi:10.1046/j.1365-8711.2000.03097.x , adsurl =

  120. [158]

    Central European Journal of Physics , keywords =

    Relaxation of quasi-stationary states in long range interacting systems and a classification of the range of pair interactions. Central European Journal of Physics , keywords =. doi:10.2478/s11534-012-0032-0 , adsurl =

  121. [159]

    ArXiv e-prints , archivePrefix = "arXiv", eprint =

    Formation and relaxation of quasi-stationary states in particle systems with power law interactions. ArXiv e-prints , archivePrefix = "arXiv", eprint =

  122. [160]

    Reports on Progress in Physics , eprint =

    Dynamics of galaxy cores and supermassive black holes. Reports on Progress in Physics , eprint =. doi:10.1088/0034-4885/69/9/R01 , adsurl =

  123. [161]

    , eprint =

    Brownian Motion of Black Holes in Dense Nuclei. , eprint =. doi:10.1086/510294 , adsurl =

  124. [162]

    , archivePrefix = "arXiv", eprint =

    Testing properties of the Galactic center black hole using stellar orbits. , archivePrefix = "arXiv", eprint =. doi:10.1103/PhysRevD.81.062002 , adsurl =

  125. [163]

    Dynamics and Evolution of Galactic Nuclei, by David Merritt

    Dynamics and Evolution of Galactic Nuclei. Dynamics and Evolution of Galactic Nuclei, by David Merritt. ISBN: <ISBN>9780691158600</ISBN>. 544 pp. | 6 x 9 | 5 halftones. 136 line illus. Princeton: Princeton University Press, 2013 , year = 2013, month = jul, adsurl =

  126. [164]

    Gravitational Encounters and the Evolution of Galactic Nuclei. I. Method. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1088/0004-637X/804/1/52 , adsurl =

  127. [165]

    Gravitational Encounters and the Evolution of Galactic Nuclei. II. Classical and Resonant Relaxation. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1088/0004-637X/804/2/128 , adsurl =

  128. [166]

    Gravitational Encounters and the Evolution of Galactic Nuclei. III. Anomalous Relaxation. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1088/0004-637X/810/1/2 , adsurl =

  129. [167]

    Gravitational Encounters and the Evolution of Galactic Nuclei. IV. Captures Mediated by Gravitational-wave Energy Loss. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1088/0004-637X/814/1/57 , adsurl =

  130. [168]

    Lecture Notes in Physics, Berlin Springer Verlag , year = 2016, series =

    Orbital Motion in Galactic Nuclei. Lecture Notes in Physics, Berlin Springer Verlag , year = 2016, series =. doi:10.1007/978-3-319-19416-5_5 , adsurl =

  131. [169]

    ApJ , keywords =

    A modification of the Newtonian dynamics as a possible alternative to the hidden mass hypothesis. ApJ , keywords =. doi:10.1086/161130 , adsurl =

  132. [171]

    Astronomy Reports , year = 2014, month = oct, volume = 58, pages =

    The effective stochastization time in stellar systems. Astronomy Reports , year = 2014, month = oct, volume = 58, pages =. doi:10.1134/S1063772914100102 , adsurl =

  133. [172]

    , archivePrefix = "arXiv", eprint =

    Evolution of massive black hole binaries in rotating stellar nuclei: Implications for gravitational wave detection. , archivePrefix = "arXiv", eprint =. doi:10.1103/PhysRevD.95.084032 , adsurl =

  134. [173]

    ApJ , keywords =

    Supermassive Black Hole Binaries as Galactic Blenders. ApJ , keywords =. doi:10.1086/378287 , archivePrefix =. astro-ph/0303173 , primaryClass =

  135. [174]

    , archivePrefix = "arXiv", eprint =

    Chandrasekhar's dynamical friction and non-extensive statistics. , archivePrefix = "arXiv", eprint =. doi:10.1088/1475-7516/2016/05/021 , adsurl =

  136. [175]

    ApJ , archivePrefix = "arXiv", eprint =

    The Final-parsec Problem in the Collisionless Limit. ApJ , archivePrefix = "arXiv", eprint =. doi:10.1088/0004-637X/810/1/49 , adsurl =

  137. [176]

    Phys.Rev.E , keywords =

    Noise-induced phase space transport in two-dimensional Hamiltonian systems. Phys.Rev.E , keywords =. doi:10.1103/PhysRevE.60.1567 , archivePrefix =. astro-ph/9902092 , primaryClass =

  138. [177]

    MNRAS , keywords =

    Triaxial orbit based galaxy models with an application to the (apparent) decoupled core galaxy NGC 4365. MNRAS , keywords =. doi:10.1111/j.1365-2966.2008.12874.x , archivePrefix =. 0712.0113 , primaryClass =

  139. [178]

    MNRAS , keywords =

    Realistic triaxial density-potential-force profiles for stellar systems and dark matter haloes. MNRAS , keywords =. doi:10.1111/j.1365-2966.2007.11655.x , archivePrefix =. astro-ph/0702595 , primaryClass =

  140. [179]

    ApJ , keywords =

    Self-consistent Models of Cuspy Triaxial Galaxies with Dark Matter Halos. ApJ , keywords =. doi:10.1086/519300 , archivePrefix =. astro-ph/0611205 , primaryClass =

  141. [180]

    ApJS , keywords =

    Dynamical Modeling of Galaxies and Supermassive Black Holes: Axisymmetry in Triaxial Schwarzschild Orbit Superposition Models. ApJS , keywords =. doi:10.3847/1538-4365/abe6a0 , archivePrefix =. 2005.00542 , primaryClass =

  142. [181]

    ApJ , keywords =

    A New Implementation of the Schwarzchild Method for Constructing Observationally Driven Dynamical Models of Galaxies of All Morphological Types. ApJ , keywords =. doi:10.3847/1538-4357/ab5fe0 , archivePrefix =. 1912.04288 , primaryClass =

  143. [182]

    Koninklijke Nederlandse Akademie van Wetenschappen Proceedings Series B Physical Sciences , year = 1919, month = jan, volume =

    On the Brownian Motion. Koninklijke Nederlandse Akademie van Wetenschappen Proceedings Series B Physical Sciences , year = 1919, month = jan, volume =

  144. [183]

    Physical Review , year = 1930, month = sep, volume =

    On the Theory of the Brownian Motion. Physical Review , year = 1930, month = sep, volume =. doi:10.1103/PhysRev.36.823 , adsurl =

  145. [184]

    ApJ , keywords =

    The Evolution of Cuspy Triaxial Galaxies Harboring Central Black Holes. ApJ , keywords =. doi:10.1086/338683 , archivePrefix =. astro-ph/0111029 , primaryClass =

  146. [185]

    A&A , keywords =

    Turbulent drag on stellar mass black holes embedded in disks of active galactic nuclei. A&A , keywords =. doi:10.1051/0004-6361/202555879 , archivePrefix =. 2506.02173 , primaryClass =

Pith tools

Reviewed August 4, 2026 · model on record in the stance chip above.