Export citation

Export citation

Choose format for download:

Download Citation
  • Access by Xinjiang University

New cosmological constraints on the evolution of dark matter energy density

Yupeng Yang*, Xinyi Dai, and Yicheng Wang

  • *Contact author: ypyang@aliyun.com

Phys. Rev. D 111, 103534 – Published 28 May, 2025

DOI: https://doi.org/10.1103/8ync-vrtz

Abstract

We constrain the evolution of dark matter energy density over time, specifically focusing on deviation from the standard model represented by the equation ρm(1+z)3ϵ, where ϵ is a constant parameter. Utilizing a diverse array of observational datasets, including baryon acoustic oscillations (BAO) data from the first release of the Dark Energy Spectroscopic Instrument (DESI), distance priors derived from cosmic microwave background observations by the Planck satellite, Hubble rate data obtained through the cosmic chronometers method, type Ia supernova data from the Panthon sample, and the data from the redshift space distortion measurements (fσ8), we derive stringent constraints on the deviation parameter. We find that for the model under consideration, the deviation parameter is constrained to be ϵ=0.00730.0033+0.0029, indicating a deviation of approximately 2.4σ from the scenario where dark matter and vacuum dark energy do not interact. When compared with previous studies and alternative analyses, our findings provide corroborative evidence for an interaction between dark matter and vacuum dark energy, particularly in light of the release of BAO data from DESI.

Physics Subject Headings (PhySH)

Article Text

References (100)

  1. N. Aghanim et al., Astron. Astrophys. 641, A6 (2020).
  2. E. J. Copeland, M. Sami, and S. Tsujikawa, Int. J. Mod. Phys. D 15, 1753 (2006).
  3. L. Perivolaropoulos and F. Skara, New Astron. Rev. 95, 101659 (2022).
  4. J.-P. Hu and F.-Y. Wang, Universe 9, 94 (2023).
  5. E. Di Valentino, O. Mena, S. Pan, L. Visinelli, W. Yang, A. Melchiorri, D. F. Mota, A. G. Riess, and J. Silk, Classical Quantum Gravity 38, 153001 (2021).
  6. B. Wang, E. Abdalla, F. Atrio-Barandela, and D. Pavon, Rep. Prog. Phys. 79, 096901 (2016).
  7. J. M. Overduin and F. I. Cooperstock, Phys. Rev. D 58, 043506 (1998).
  8. J. C. Carvalho, J. A. S. Lima, and I. Waga, Phys. Rev. D 46, 2404 (1992).
  9. A. I. Arbab, Classical Quantum Gravity 20, 93 (2003).
  10. I. L. Shapiro and J. Sola, J. High Energy Phys. 02 (2002) 006.
  11. S. Ray and U. Mukhopadhyay, Gravitation Cosmol. 13, 142 (2007).
  12. C. Espana-Bonet, P. Ruiz-Lapuente, I. L. Shapiro, and J. Sola, J. Cosmol. Astropart. Phys. 02 (2004) 006.
  13. I. L. Shapiro, J. Sola, C. Espana-Bonet, and P. Ruiz-Lapuente, Phys. Lett. B 574, 149 (2003).
  14. A. Gómez-Valent, J. Solà, and S. Basilakos, J. Cosmol. Astropart. Phys. 01 (2015) 004.
  15. J. Sola, A. Gomez-Valent, and J. de Cruz Pérez, Astrophys. J. Lett. 811, L14 (2015).
  16. J. Solà, A. Gómez-Valent, and J. de Cruz Pérez, Astrophys. J. 836, 43 (2017).
  17. J. Solà Peracaula, J. de Cruz Pérez, and A. Gómez-Valent, Europhys. Lett. 121, 39001 (2018).
  18. J. Sola Peracaula, J. de Cruz Perez, and A. Gomez-Valent, Mon. Not. R. Astron. Soc. 478, 4357 (2018).
  19. J. Solà, A. Gómez-Valent, and J. de Cruz Pérez, Phys. Lett. B 774, 317 (2017).
  20. Y. Yang, Y. Wang, and X. Dai, Eur. Phys. J. C 85, 224 (2025).
  21. J. C. Carvalho, J. A. S. Lima, and I. Waga, Phys. Rev. D 46, 2404 (1992).
  22. R. G. Vishwakarma, Classical Quantum Gravity 17, 3833 (2000).
  23. C. Kaeonikhom, H. Assadullahi, J. Schewtschenko, and D. Wands, J. Cosmol. Astropart. Phys. 01 (2023) 042.
  24. P. Wang and X.-H. Meng, Classical Quantum Gravity 22, 283 (2005).
  25. Z. C. Santana Júnior, M. O. Costa, R. F. L. Holanda, and R. Silva, Phys. Rev. D 109, 123542 (2024).
  26. M. Koussour, N. Myrzakulov, and J. Rayimbaev, Adv. Space Res. 74, 1343 (2024).
  27. A. M. Öztaş, Mon. Not. R. Astron. Soc. 481, 2228 (2018).
  28. R. G. Vishwakarma, Classical Quantum Gravity 18, 1159 (2001).
  29. H. Azri and A. Bounames, Int. J. Mod. Phys. D 26, 1750060 (2017).
  30. H. Azri and A. Bounames, Gen. Relativ. Gravit. 44, 2547 (2012).
  31. M. Szydowski, Phys. Rev. D 91, 123538 (2015).
  32. M. Bruni, R. Maier, and D. Wands, Phys. Rev. D 105, 063532 (2022).
  33. J. Sola Peracaula, A. Gomez-Valent, J. de Cruz Perez, and C. Moreno-Pulido, Universe 9, 262 (2023).
  34. L. S. Brito, J. F. Jesus, A. A. Escobal, and S. H. Pereira, arXiv:2412.06756.
  35. L. Feng, D.-Z. He, H.-L. Li, J.-F. Zhang, and X. Zhang, Sci. China Phys. Mech. Astron. 63, 290404 (2020).
  36. E. M. Barboza, L. J. S. Oliveira, and B. B. Soares, Int. J. Mod. Phys. D 33, 2450010 (2024).
  37. S. Basilakos and J. Solà, Phys. Rev. D 90, 023008 (2014).
  38. A. Gómez-Valent and J. Solà Peracaula, Mon. Not. R. Astron. Soc. 478, 126 (2018).
  39. A. G. Adame et al. (DESI Collaboration), J. Cosmol. Astropart. Phys. 02 (2025) 021.
  40. J.-X. Li and S. Wang, arXiv:2412.09064.
  41. L. Chen, Q.-G. Huang, and K. Wang, J. Cosmol. Astropart. Phys. 02 (2019) 028.
  42. Y. Liu, R.-Y. Guo, J.-F. Zhang, and X. Zhang, J. Cosmol. Astropart. Phys. 05 (2019) 016.
  43. Y.-Y. Xu and X. Zhang, Eur. Phys. J. C 76, 588 (2016).
  44. L. Feng and T. Lu, J. Cosmol. Astropart. Phys. 07 (2011) 034.
  45. W. Hu and N. Sugiyama, Astrophys. J. 471, 542 (1996).
  46. Z. Zhai and Y. Wang, J. Cosmol. Astropart. Phys. 07 (2019) 005.
  47. R. Jimenez and A. Loeb, Astrophys. J. 573, 37 (2002).
  48. M. Moresco et al., Living Rev. Relativity 25, 6 (2022).
  49. R. Jimenez, M. Moresco, L. Verde, and B. D. Wandelt, J. Cosmol. Astropart. Phys. 11 (2023) 047.
  50. E.-K. Li, M. Du, Z.-H. Zhou, H. Zhang, and L. Xu, Mon. Not. R. Astron. Soc. 501, 4452 (2021).
  51. D. Stern, R. Jimenez, L. Verde, M. Kamionkowski, and S. A. Stanford, J. Cosmol. Astropart. Phys. 02 (2010) 008.
  52. M. Moresco et al., J. Cosmol. Astropart. Phys. 08 (2012) 006.
  53. M. Moresco, L. Pozzetti, A. Cimatti, R. Jimenez, C. Maraston, L. Verde, D. Thomas, A. Citro, R. Tojeiro, and D. Wilkinson, J. Cosmol. Astropart. Phys. 05 (2016) 014.
  54. M. Moresco, Mon. Not. R. Astron. Soc. 450, L16 (2015).
  55. A. L. Ratsimbazafy, S. I. Loubser, S. M. Crawford, C. M. Cress, B. A. Bassett, R. C. Nichol, and P. Väisänen, Mon. Not. R. Astron. Soc. 467, 3239 (2017).
  56. C. Zhang, H. Zhang, S. Yuan, S. Liu, T.-J. Zhang, and Y.-C. Sun, Res. Astron. Astrophys. 14, 1221–1233 (2014).
  57. H. Singirikonda and S. Desai, Eur. Phys. J. C 80, 694 (2020).
  58. D. M. Scolnic et al. (Pan-STARRS1 Collaboration), Astrophys. J. 859, 101 (2018).
  59. Y.-S. Song and W. J. Percival, J. Cosmol. Astropart. Phys. 10 (2009) 004.
  60. M. Davis, A. Nusser, K. Masters, C. Springob, J. P. Huchra, and G. Lemson, Mon. Not. R. Astron. Soc. 413, 2906 (2011).
  61. M. J. Hudson and S. J. Turnbull, Astrophys. J. 751, L30 (2012).
  62. S. J. Turnbull, M. J. Hudson, H. A. Feldman, M. Hicken, R. P. Kirshner, and R. Watkins, Mon. Not. R. Astron. Soc. 420, 447 (2011).
  63. L. Samushia, W. J. Percival, and A. Raccanelli, Mon. Not. R. Astron. Soc. 420, 2102 (2012).
  64. C. Blake et al., Mon. Not. R. Astron. Soc. 425, 405 (2012).
  65. R. Tojeiro et al., Mon. Not. R. Astron. Soc. 424, 2339 (2012).
  66. C.-H. Chuang and Y. Wang, Mon. Not. R. Astron. Soc. 435, 255 (2013).
  67. F. Beutler, C. Blake, M. Colless, D. H. Jones, L. Staveley-Smith, G. B. Poole, L. Campbell, Q. Parker, W. Saunders, and F. Watson, Mon. Not. R. Astron. Soc. 423, 3430 (2012).
  68. C. Blake, I. K. Baldry, J. Bland-Hawthorn, L. Christodoulou, M. Colless, C. Conselice, S. P. Driver, A. M. Hopkins, J. Liske, J. Loveday, P. Norberg, J. A. Peacock, G. B. Poole, and A. S. G. Robotham, Mon. Not. R. Astron. Soc. 436, 3089 (2013).
  69. A. G. Sánchez et al., Mon. Not. R. Astron. Soc. 440, 2692 (2014).
  70. C.-H. Chuang et al., Mon. Not. R. Astron. Soc. 461, 3781 (2016).
  71. S. de la Torre et al., Astron. Astrophys. 557, A54 (2013).
  72. C. Howlett, A. J. Ross, L. Samushia, W. J. Percival, and M. Manera, Mon. Not. R. Astron. Soc. 449, 848 (2015).
  73. M. Feix, A. Nusser, and E. Branchini, Phys. Rev. Lett. 115, 011301 (2015).
  74. T. Okumura et al., Publ. Astron. Soc. Jpn. 68, 38 (2016).
  75. D. Huterer, D. Shafer, D. Scolnic, and F. Schmidt, J. Cosmol. Astropart. Phys. 05 (2017) 015.
  76. A. Pezzotta et al., Astron. Astrophys. 604, A33 (2017).
  77. S. Alam et al. (BOSS Collaboration), Mon. Not. R. Astron. Soc. 470, 2617 (2017).
  78. S. Nesseris, G. Pantazis, and L. Perivolaropoulos, Phys. Rev. D 96, 023542 (2017).
  79. V. Khatri, C. P. Singh, and M. Srivastava, arXiv:2405.15296.
  80. W. J. C. da Silva and R. Silva, Eur. Phys. J. C 81, 403 (2021).
  81. S. Sahlu, U. Mukhopadhyay, R. R. Mekuria, and A. Abebe, arXiv:2301.02913.
  82. L. Kazantzidis and L. Perivolaropoulos, Phys. Rev. D 97, 103503 (2018).
  83. C. Blake et al., Mon. Not. R. Astron. Soc. 425, 405 (2012).
  84. G.-B. Zhao et al., Mon. Not. R. Astron. Soc. 482, 3497 (2018).
  85. D. Foreman-Mackey, D. W. Hogg, D. Lang, and J. Goodman, Publ. Astron. Soc. Pac. 125, 306 (2013).
  86. C. Heymans et al., Astron. Astrophys. 646, A140 (2021).
  87. A. Lewis, arXiv:1910.13970.
  88. H. Akaike, IEEE Trans. Autom. Control 19, 716 (1974).
  89. G. Schwarz, Ann. Stat. 6, 461 (1978).
  90. R. E. Kass and A. E. R. and, J. Am. Stat. Assoc. 90, 773 (1995).
  91. E. L. Wagoner, E. Rozo, H. Aung, and D. Nagai, Mon. Not. R. Astron. Soc. 504, 1619 (2021).
  92. D. Wang, Phys. Rev. D 103, 123538 (2021).
  93. D. Wang, Phys. Rev. D 97, 123507 (2018).
  94. D. Wang and X.-H. Meng, Phys. Dark Universe 18, 30 (2017).
  95. D. Wang and X.-H. Meng, Astrophys. J. 843, 100 (2017).
  96. T.-N. Li, P.-J. Wu, G.-H. Du, S.-J. Jin, H.-L. Li, J.-F. Zhang, and X. Zhang, Astrophys. J. 976, 1 (2024).
  97. S. Pan, S. Paul, E. N. Saridakis, and W. Yang, arXiv:2504.00994.
  98. M. Abdul Karim et al. (DESI Collaboration), arXiv:2503.14738.
  99. J. Solà Peracaula, A. Gómez-Valent, J. de Cruz Perez, and C. Moreno-Pulido, Europhys. Lett. 134, 19001 (2021).
  100. D. J. Eisenstein and W. Hu, Astrophys. J. 496, 605 (1998).

Outline

Information

Sign In to Your Journals Account

Filter

Filter

Article Lookup

Enter a citation