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Halometry from Astrometry

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arxiv 1804.01991 v1 pith:UDCZZ5OV submitted 2018-04-05 astro-ph.CO astro-ph.GAastro-ph.IMhep-ph

classification astro-ph.COastro-ph.GAastro-ph.IMhep-ph
keywords lensingastrometrybackgrounddarkdetectiongravitationallenslocation
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Halometry---mapping out the spectrum, location, and kinematics of nonluminous structures inside the Galactic halo---can be realized via variable weak gravitational lensing of the apparent motions of stars and other luminous background sources. Modern astrometric surveys provide unprecedented positional precision along with a leap in the number of cataloged objects. Astrometry thus offers a new and sensitive probe of collapsed dark matter structures over a wide mass range, from one millionth to several million solar masses. It opens up a window into the spectrum of primordial curvature fluctuations with comoving wavenumbers between $5~\text{Mpc}^{-1}$ and $10^5~\text{Mpc}^{-1}$, scales hitherto poorly constrained. We outline detection strategies based on three classes of observables---multi-blips, templates, and correlations---that take advantage of correlated effects in the motion of many background light sources that are produced through time-domain gravitational lensing. While existing techniques based on single-source observables such as outliers and mono-blips are best suited for point-like lens targets, our methods offer parametric improvements for extended lens targets such as dark matter subhalos. Multi-blip lensing events may also unveil the existence, location, and mass of planets in the outer reaches of the Solar System, where they would likely have escaped detection by direct imaging.

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Forward citations

Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 78 citations worldwide. Full citation record

  1. Probing small-scale power spectrum with gravitational-wave diffractive lensing

    hep-ph 2025-01 conditional novelty 7.0 of 10

    Gravitational-wave diffractive lensing, combined statistically across many events, can map the small-scale matter power spectrum through a new frequency-to-scale relation.

  2. Polar coordinate transformations for machine learning based dark matter subhalo detection in strong gravitational lenses

    astro-ph.GA 2026-07 conditional novelty 5.5 of 10

    Polar-transformed strong-lensing images raise CNN subhalo detection fractions by ~15% relative to Cartesian inputs for 10^9–10^9.5 solar-mass subhalos on simulated HST data.

  3. Probing Long-Range Forces Between Neutrinos with Cosmic Structures

    hep-ph 2024-12 conditional novelty 5.0 of 10

    Neutrino long-range forces stronger than gravity would make the cosmic neutrino background collapse into bound states, and existing matter power spectrum and reionization data now exclude a band of couplings for force...

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