Evidence for dark matter in the inner Milky Way
arXiv:1502.03821 · doi:10.1038/nphys3237
Abstract
The ubiquitous presence of dark matter in the universe is today a central tenet in modern cosmology and astrophysics. Ranging from the smallest galaxies to the observable universe, the evidence for dark matter is compelling in dwarfs, spiral galaxies, galaxy clusters as well as at cosmological scales. However, it has been historically difficult to pin down the dark matter contribution to the total mass density in the Milky Way, particularly in the innermost regions of the Galaxy and in the solar neighbourhood. Here we present an up-to-date compilation of Milky Way rotation curve measurements, and compare it with state-of-the-art baryonic mass distribution models. We show that current data strongly disfavour baryons as the sole contribution to the galactic mass budget, even inside the solar circle. Our findings demonstrate the existence of dark matter in the inner Galaxy while making no assumptions on its distribution. We anticipate that this result will compel new model-independent constraints on the dark matter local density and profile, thus reducing uncertainties on direct and indirect dark matter searches, and will shed new light on the structure and evolution of the Galaxy.
First submitted version of letter published in Nature Physics on Febuary 9, 2015: http://www.nature.com/nphys/journal/vaop/ncurrent/full/nphys3237.html
References in corpus (7)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- The Local Dark Matter Density
- Galactic masers and the Milky Way circular velocity
- Milky Way Kinematics: Measurements at the Subcentral Point of the Fourth Quadrant
- The Long Bar in the Milky Way. Corroboration of an old hypothesis
- Open Clusters as Galactic Disk Tracers: I. Project Motivation, Cluster Membership and Bulk Three-Dimensional Kinematics
- The current best estimate of the Galactocentric distance of the Sun based on comparison of different statistical techniques
Cited by in corpus (49)
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Detection of the Keplerian decline in the Milky Way rotation curve
- Dark matter spikes in the vicinity of Kerr black holes
- Signatures of Majorana dark matter with t-channel mediators
- Handling the Uncertainties in the Galactic Dark Matter Distribution for Particle Dark Matter Searches
- Measuring the stability of fundamental constants with a network of clocks
- Dark matter halo shapes in the Auriga simulations
- A model for a dark matter core at the galactic center
- Constraints on heavy decaying dark matter from 570 days of LHAASO observations
- Sensitivity of the Cherenkov Telescope Array to the detection of a dark matter signal in comparison to direct detection and collider experiments
- Dark Matter in lines: Galactic Center vs dwarf galaxies
- The dark matter profile of the Milky Way: a non-parametric reconstruction
- Light burden of memory: Constraining primordial black holes with high-energy neutrinos
- : a new compilation of the Milky Way rotation curve data
- Extreme mass ratio inspirals in galaxies with dark matter halos
- Which Milky Way masses are consistent with the slightly declining 5-25 kpc rotation curve?
- A Bayesian estimation of the Milky Way's circular velocity curve using Gaia DR3
- Dark Matter Searches with Levitated Sensors
- Cooling of Neutron Stars admixed with Light Dark Matter: a case study
- Toward the ultimate reach of current imaging atmospheric Cherenkov telescopes and their sensitivity to TeV dark matter
- Testing MOdified Gravity (MOG) theory and dark matter model in Milky Way using the local observables
- Testing the weak equivalence principle by differential measurements of fundamental constants in the Magellanic Clouds
- Starburst Nuclei as Light Dark Matter Laboratories
- Constraints on the electron-to-proton mass ratio variation at the epoch of reionization
- Search for the gravity functional form via gaussian processes
- High-energy gamma-ray emission from memory-burdened primordial black holes
- On the Role of Neutrinos Telescopes in the Search for Dark Matter Annihilations in the Sun
- Stellar convective cores as dark matter probes
- Modelling mass distribution of the Milky Way galaxy using Gaia billion-star map
- The local dark matter distribution in self-interacting dark matter halos
- Prospects of Probing Dark Matter Condensates with Gravitational Waves
- Radio frequency emissions from dark-matter-candidate magnetized quark nuggets interacting with matter
- Gravitational Lensing of Spherically Symmetric Black Holes in Dark Matter Halos
- Solar System constraints on Renormalization Group extended General Relativity: The PPN and Laplace-Runge-Lenz analyses with the external potential effect
- The formation history of the Milky Way disc with high-resolution cosmological simulations
- Highest-Resolution Rotation Curve of the Inner Milky Way proving the Galactic Shock Wave
- Linear analysis of the gravitational beam-plasma instability
- Probing Particle Physics with Gravitational Waves
- Rotation Curve of the Milky Way and the Dark Matter Density
- DarkFlux: A new tool to analyze indirect-detection spectra of next-generation dark matter models
- Cosmological implications of the Gaia Milky Way declining rotation curve
- How do the dynamics of the Milky Way -- Large Magellanic Cloud system affect gamma-ray constraints on particle dark matter?
- Distinguishing dark matter halos with Extreme mass ratio inspirals
- Neutrinos from stars in the Milky Way
- Listening for ultra-heavy dark matter with underwater acoustic detectors
- The Density of Dark Matter in the Galactic Bulge and Implications for Indirect Detection
- Does the gamma-ray signal from the central Milky Way indicate Sommerfeld enhancement of dark matter annihilation?
- The odd primordial halo of the Milky Way implied by Gaia. A shallow core, but a steep decline
- Dark Matter profiles of "in silico" galaxies: deep learning inference