A Galactic-scale extreme-precision radial velocity survey
astro-ph.GA
Submitted: 2026-09-20
Updated: 2026-09-20
Comments: 33 pages; 24 figures
Code: https://github.com/timothydmorton/isochrones
License: http://creativecommons.org/licenses/by/4.0/
The gist: We describe the first Galactic-scale extreme-precision radial velocity (EPRV) survey and outline our goals of measuring Galactic accelerations and deriving constraints on the dark matter distribution
Terminology
Abstract
We describe the first Galactic-scale extreme-precision radial velocity (EPRV) survey and outline our goals of measuring Galactic accelerations and deriving constraints on the dark matter distribution in our Galaxy. We are targeting quiet subgiant stars within a kiloparsec in radius of the Sun and about 2 kiloparsec in vertical height relative to the Galactic mid-plane. The observations described here were carried out using the Echelle SPectrograph for Rocky Exoplanets and Stable Spectroscopic Observations (ESPRESSO) at the Very Large Telescope (VLT), between 2021-2025. We began by operating at a typical RV precision of about 70 cm/s to select quiet stars from stellar activity indicators, and are now operating at about 50 cm/s. We selected stars with low stellar jitter (determined from their RV scatter as a function of epoch) with the goal that they yield a measurement of the Galactic acceleration on approximately a decade timescale. We refer to this as our ``gold" sample. We also identify stars with possible companions (either brown dwarfs or planetary companions) or hitherto unknown stellar binaries that we have culled from our survey. For a few cases, we present initial constraints on the companion mass and orbital period. We also present the photospheric and fundamental stellar parameters for our ``gold" sample of sub-giant stars. This first Galactic-scale EPRV survey provides a pathfinder for next-generation surveys with extremely large telescopes, opening the possibility of directly mapping the gravitational acceleration field across the Milky Way and potentially beyond.
Sources
- Towards a direct measure of the Galactic acceleration
- Snowmass2021 Cosmic Frontier White Paper: Observational Facilities to Study Dark Matter
- A Dynamical Mass Estimate from the Magellanic Stream
- Building an Acceleration Ladder with Tidal Streams and Pulsar Timing
- An Acceleration is Worth a Hundred Thousand Phase Space Measurements
- Mean Mass Density near the Sun from the Divergence Theorem and Pulsar Accelerations
- Earths within Reach: Evaluation of Strategies for Mitigating Solar Variability using 3.5 years of NEID Sun-as-a-Star Observations
- Strong Constraints on Line Signals from Dark Matter Annihilation in a Nearby Subhalo
- Constraints on dark matter annihilation from a nearby subhalo candidate
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