Theoretical and Natural Science

- The Open Access Proceedings Series for Conferences


Theoretical and Natural Science

Vol. 11, 17 November 2023


Open Access | Article

Density of dark matter in the Milky Way

Yiwen Lu * 1
1 Lake Forest Academy

* Author to whom correspondence should be addressed.

Theoretical and Natural Science, Vol. 11, 36-46
Published 17 November 2023. © 2023 The Author(s). Published by EWA Publishing
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
Citation Yiwen Lu. Density of dark matter in the Milky Way. TNS (2023) Vol. 11: 36-46. DOI: 10.54254/2753-8818/11/20230378.

Abstract

Although several discoveries have proved the gravitational effects of dark matter (DM) on various astrophysical objects, its origin remains one of the main puzzles in physics. These observations can be explained by adding a new particle to the Standard Model that is weakly interacting, massive, stable, and non-baryonic. One of the main characteristics of DM in question, beyond its exact particle nature, is its density in the Universe. In this paper, we use the latest data for the local DM density, total DM mass, and rotation curves in the Milky Way to estimate the density profile of these elusive particles in our Galaxy. We find the density profile parameters that match the current data and analyze the density of the stellar bulge and gas and star in the disk. We show that the stellar bulge dominates the Galactic dynamic for distances below a few kiloparsecs (kpc), the disk plays the most important role at intermediate distances, and DM explains rotation data beyond a few tens of kpc. Finally, we settle on a local DM density of about 0.5-0.7 GeV/ to fit the data well, regardless of the exact function we use to model the density profile.

Keywords

dark matter density, rotation curves, dark matter profiles.

References

1. Bertone G and Hooper D 2018 Rev. Mod. Phys. 90 045002.

2. Van Albada T S, Bahcall J N, Begeman K and Sancisi R 1985 Astrophys. J. 295 305.

3. Cirelli M, Gorcella G, Hektor A, Hutsi G, Kadastik M, Panci P, Raidal M, Sala F and Strumia A 2011 JCAP 03 051.

4. De Salas P, Malhan K, Freese K, Hattori K and Valluri M 2019 Journal of Cosmology and Astroparticle Physics 2019 037.

5. Sofue Y 2020 Galaxies 8 37.

6. Sofue Y 2016 Publications of the Astronomical Society of Japan 69 R1.

Data Availability

The datasets used and/or analyzed during the current study will be available from the authors upon reasonable request.

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Volume Title
Proceedings of the 2023 International Conference on Mathematical Physics and Computational Simulation
ISBN (Print)
978-1-83558-133-9
ISBN (Online)
978-1-83558-134-6
Published Date
17 November 2023
Series
Theoretical and Natural Science
ISSN (Print)
2753-8818
ISSN (Online)
2753-8826
DOI
10.54254/2753-8818/11/20230378
Copyright
17 November 2023
Open Access
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited

Copyright © 2023 EWA Publishing. Unless Otherwise Stated