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Dynamical streams in the local stellar halo

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arxiv 2503.02926 v2 pith:UB2CQHVZ submitted 2025-03-04 astro-ph.GA

classification astro-ph.GA
keywords spacestreamspatternspeedpotentialresonancestheyvelocity
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abstract

Co-moving groups of stars (streams) are well known in the velocity space of the disc near the Sun. Many are thought to arise from resonances with the Galactic bar or spiral arms. In this work, we search for similar moving groups in the velocity space of the halo, at low angular momentum. From the asymmetry of the radial velocity distribution $v_R$, we identify two inward-moving streams with $v_R<0$ and small $|v_\phi|$. These are projections of the `chevrons' previously discovered in radial phase space $(R,v_R)$. A test particle simulation in a realistic Milky Way potential with a decelerating bar naturally produces analogues of these features, and they are observed across a wide range of metallicity. They are therefore very likely to be dynamical streams created by trapping in the bar's resonances. Specifically, they occupy regions of phase space where orbits are trapped in the corotation and outer Lindblad resonances respectively. By tracing these streams across a range of radii in $(R,v_R)$ space, we fit resonant orbits to their tracks in a flexible potential with variable bar pattern speed. This allows us to simultaneously constrain the mass profile of the Milky Way for $r\lesssim20$ kpc and the pattern speed $\Omega_\mathrm{b}$. We estimate the mass enclosed within $r=20$ kpc to be $M_{20}=(2.17\pm0.21)\times10^{11}M_\odot$, and the pattern speed to be $\Omega_\mathrm{b}=31.9_{-1.9}^{+1.8}$ km/s/kpc. Our fitted potential is in excellent agreement with previous results, while we favour a slightly slower pattern speed than most recent estimates.

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Forward citations

Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Bar-driven dispersal of Galactic substructure

    astro-ph.GA 2025-06 conditional novelty 7.0 of 10

    The Galactic bar disperses low-energy stellar substructure in integral-of-motion space along lines with gradient equal to the bar's pattern speed, so searches should use the Jacobi integral and chemistry instead.

  2. On the chaos induced by the Galactic bar on the orbits of nearby halo stars

    astro-ph.GA 2025-05 conditional novelty 6.0 of 10

    More than half of nearby halo stars are chaotic due to the Galactic bar, blurring substructure identifications in (E,Lz,L⊥) space and favoring the Jacobi energy.

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