Author:
Meng Liping,Xu Zhaoyi,Tang Meirong
Abstract
AbstractThere is a possibility that the event horizon of a Kerr-like black hole with perfect fluid dark matter (DM) can be destroyed, providing a potential opportunity for understanding the weak cosmic censorship conjecture of black holes. In this study, we analyze the influence of the strength parameter of perfect fluid DM on the destruction of the event horizon of a Kerr-like black hole with spinning after injecting a test particle and a scalar field. We find that, when a test particle is incident on the black hole, the event horizon is destroyed by perfect fluid dark matter for extremal black holes. For nearly extremal black holes, when the dark matter parameter satisfies $$\alpha \in \left( -r_{h} , 0\right) \cup \left( r_{h} ,k_2\right) $$
α
∈
-
r
h
,
0
∪
r
h
,
k
2
i.e. $$(A<0),$$
(
A
<
0
)
,
the event horizon of the black hole will not be destroyed; when the dark matter parameter satisfies $$\alpha \in \left( k_1 ,-r_{h} \right] \cup \left[ 0,r_{h}\right] $$
α
∈
k
1
,
-
r
h
∪
0
,
r
h
i.e. $$(A\ge 0),$$
(
A
≥
0
)
,
the event horizon of the black hole will be destroyed. When a classical scalar field is incident into the black hole in the extremal black hole case, we find that the range of mode patterns of the scalar field that can disrupt the black hole event horizon is different for different values of the perfect fluid dark matter strength parameter. In the nearly extremal black hole case, through our analysis, we have found when $$\alpha \ne 0 $$
α
≠
0
and $$\alpha \ne \pm \ r_h$$
α
≠
±
r
h
i.e. $$A\ne 0,$$
A
≠
0
,
the event horizon of the black hole can be disrupted. Our research results indicate that dark matter might be capable of breaking the black hole horizon, thus potentially violating the weak cosmic censorship conjecture.
Publisher
Springer Science and Business Media LLC
Subject
Physics and Astronomy (miscellaneous),Engineering (miscellaneous)
Reference64 articles.
1. X. Bi, Y. Fan, Q. Yue, Y. Zhou, What is dark matter? (in Chinese). Chinese Sci. Bull. 63, 2413–2421 (2018)
2. Y. Zhou, Progress in the study of dark matter properties and detection of dark matter (in Chinese). Sci. China Phys. Mech. Astron. 58(2), 020421 (2015)
3. J.H. Oort, The force exerted by the stellar system in the direction perpendicular to the galactic plane and some related problems. Bull. Astron. Inst. Neth. 6, 249 (1932)
4. V.C. Rubin, N. Thonnard, W.K. Jr. Ford, Rotational properties of 21 SC galaxies with a large range of luminosities and radii, from NGC 4605 R = 4 kpc to UGC 2885 R = 122 kpc. ApJ 238(2), 471–471 (1980)
5. Ekaterina V. Karukes, Paolo Salucci, The universal rotation curve of dwarf disc galaxies. Mon. Not. R. Astron. Soc. 465, 4703–4722 (2016)
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献