论文标题

对银河系暗物质光环中原始黑洞的存在的强大测试

A Robust Test of the Existence of Primordial Black Holes in Galactic Dark Matter Halos

论文作者

Abramowicz, Marek, Bejger, Michal, Udalski, Andrzej, Wielgus, Maciek

论文摘要

如果小行星/月亮质量范围内的非常低的质量原始黑洞(PBH)确实存在于银河系暗物质光环中,则它们必须与银河中心星(NSS)相撞。这些碰撞必须再次必须形成带有典型NSS质量的浅黑孔(LBH),$ m _ {\ rm lbh} \ oft \,1-2 \,m _ {\ odot} $。 LBHS可能是由地面重力波探测器(GW170817,GW190425等)发现的事件的背后,以及其他混合恒星黑孔 - 内核星质量事件GW191219_163120),以及最近通过Microlensing(Ogle-bllg-2011-211-0462)。尽管这些观察结果的状态尚未确认为含有LBH,但毫无疑问,重力波检测器和微透镜原理是可以检测到LBH的。我们已经计算了这些光原始黑洞与中子星的创建率。在此基础上,我们声称,如果改善了LBH事件的重力波检测器和微透明统计数据将表明,LBH的数量显着较低,即从计算出的创建速率中随之而来的,那么这将是一个明确的证明,这将是对银河系暗物质Halos的贡献显着的PBH PBH。否则,如果观察并计算出的LBH数量大致同意,那么原始黑洞的存在的假设得到了强烈的观察支持,并且还可以将其与中子星的碰撞被认为是LBHS的自然创造通道,从而解决了其起源问题,因为他们知道他们不能成为标准恒星恒星进化的产物。

If very low mass primordial black holes (PBH) within the asteroid/moon-mass range indeed reside in galactic dark matter halos, they must necessarily collide with galactic neutron stars (NSs). These collisions must, again necessarily, form light black holes (LBHs) with masses of typical NSs, $M_{\rm LBH} \approx \,1-2\,M_{\odot}$. LBHs may be behind events already detected by ground-based gravitational-wave detectors (GW170817, GW190425, and others such as a mixed stellar black hole-neutron star mass event GW191219_163120), and most recently by microlensing (OGLE-BLG-2011-0462). Although the status of these observations as containing LBHs is not confirmed, there is no question that gravitational-wave detectors and microlensing are in principle and in practice capable of detecting LBHs. We have calculated the creation rate of LBHs resulting from these light primordial black hole collisions with neutron stars. On this basis, we claim that if improved gravitational-wave detectors and microlensing statistics of the LBH events would indicate that the number of LBHs is significantly lower that what follows from the calculated creation rate, then this would be an unambiguous proof that there is no significant light PBH contribution to the galactic dark matter halos. Otherwise, if observed and calculated numbers of LBHs roughly agree, then the hypothesis of primordial black hole existence gets strong observational support, and in addition their collisions with neutron stars may be considered a natural creation channel for the LBHs, solving the problem of their origin, as it is known that they cannot be a product of standard stellar evolution.

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