Weakly self-interacting dark matter and the structure of dark halos

被引:210
|
作者
Yoshida, N
Springel, V
White, SDM
Tormen, G
机构
[1] Max Planck Inst Astrophys, D-85748 Garching, Germany
[2] Univ Padua, Dipartimento Astron, I-35122 Padua, Italy
来源
ASTROPHYSICAL JOURNAL | 2000年 / 544卷 / 02期
关键词
dark matter; galaxies : formation; methods : numerical;
D O I
10.1086/317306
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We study the formation of dark halos in a Lambda CDM universe under the assumption that cold dark matter (CDM) particles have a finite cross section for elastic collisions. We compare evolution when CDM mean free paths are comparable to halo sizes with the collisionless and fluid limits. We show that a few collisions per particle per Hubble time at halo center can substantially affect the central density profile. Cross sections an order of magnitude larger produce sufficient relaxation for rich clusters to develop core radii in the range 100-200 h(-1) kpc. The structural evolution of halos is a competition between collisional relaxation caused by individual particle interactions and violent relaxation resulting from the infall and merging processes by which clusters grow. Although our simulations concentrate on systems of cluster size, we can scale our results to address the halo structure expected for dwarf galaxies. We find that collision cross sections sufficiently large to significantly modify the cores of such galaxies produce cluster cores that are too large and/or too round to be consistent with observation. Thus, the simplest model for self-interacting dark matter is unable to improve fits to published dwarf galaxy rotation curves without violating other observational constraints.
引用
收藏
页码:L87 / L90
页数:4
相关论文
共 50 条
  • [41] Effective theory of self-interacting dark matter
    Bellazzini, Brando
    Cliche, Mathieu
    Tanedo, Philip
    [J]. PHYSICAL REVIEW D, 2013, 88 (08):
  • [42] What if dark matter is bosonic and self-interacting
    Riotto, A
    Tkachev, I
    [J]. PHYSICS LETTERS B, 2000, 484 (3-4) : 177 - 182
  • [43] Self-interacting dark matter and sterile neutrinos
    Tang, Yong
    [J]. XIV INTERNATIONAL CONFERENCE ON TOPICS IN ASTROPARTICLE AND UNDERGROUND PHYSICS (TAUP 2015), PTS 1-7, 2016, 718
  • [44] Self-interacting neutrino portal dark matter
    Lamprea, J. M.
    Peinado, E.
    Smolenski, S.
    Wudka, J.
    [J]. PHYSICAL REVIEW D, 2021, 103 (01)
  • [45] The cosmological evolution of self-interacting dark matter
    Egana-Ugrinovic, Daniel
    Essig, Rouven
    Gift, Daniel
    LoVerde, Marilena
    [J]. JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2021, (05):
  • [46] Self-interacting superfluid dark matter droplets
    Delgado, Vicente
    Munoz Mateo, Antonio
    [J]. MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2023, 518 (03) : 4064 - 4072
  • [47] On thermal production of self-interacting dark matter
    Choi, Soo-Min
    Kang, Yoo-Jin
    Lee, Hyun Min
    [J]. JOURNAL OF HIGH ENERGY PHYSICS, 2016, (12):
  • [48] Inception of self-interacting dark matter with dark charge conjugation symmetry
    Ma, Ernest
    [J]. PHYSICS LETTERS B, 2017, 772 : 442 - 445
  • [49] Self-interacting dark matter constraints in a thick dark disk scenario
    Vattis, Kyriakos
    Koushiappas, Savvas M.
    [J]. PHYSICAL REVIEW D, 2018, 97 (10)
  • [50] On the late-time evolution of velocity-dependent self-interacting dark matter halos
    Gad-Nasr, Sophia
    Boddy, Kimberly K.
    Kaplinghat, Manoj
    Outmezguine, Nadav Joseph
    Sagunski, Laura
    [J]. JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2024, (05):