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On the likelihood of Gravitational Wave emission during the Tidal Disruption of stars by Super Massive Black Holes

机译:超大型黑洞潮汐破坏恒星中引力波发射的可能性

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Tidal Disruption Events (TDEs) are a common feature between Active and Quiescent Galactic Nuclei; the study of these events is a very useful tool to probe phenomena that relate to the formation of an accretion disc or a jet. Also, the accretion rate at the beginning of the tidal flare is expected to be significantly super-Eddington and might result in high energy emission (in soft X-rays but sometimes up to the gamma regime, as in the the case of Swift J1644, see Komossa, 2015). These events may even play an important role in the newborn field of the Multimessenger Astronomy. This work is set within this context. Indeed, it is a study of generation of Gravitational Waves (GWs) from the hot accreting torus resulting after a TDE. Since the torus has only formed recently, magnetic fields are not expected to be strong enough, so that the torus is likely to be unstable to the Papaloizou-Pringle Instability (PPI), producing a strongly varying mass quadrupole. Here, the study of the evolution of such tori is developed, using both analytical calculation and a Smoothed Particle Hydrodynamics simulation (SPH). In particular the goal of this work is to determine the GW waveform and to compute the characteristic strain of these GWs in order to see if they are detectable by the Laser Interferometer Space Antenna (LISA).
机译:潮汐中断事件(TDES)是主动和静态半乳核核之间的共同特征;对这些事件的研究是一种非常有用的工具,可以探测与形成吸收圆盘或喷射的形成的现象。此外,潮汐耀斑开始的增生率预计将是超级埃丁顿的显着,可能导致高能发射(在软X射线中,但有时达到伽玛制度,如Swift J1644的情况下,参见komossa,2015)。这些事件甚至可能在多国天文学的新生领域中发挥着重要作用。此工作设置在此上下文中。实际上,它是一种从TDE之后从热凸圆环产生的引力波(GWS)的研究。由于圆环仅形成近最近,磁场预计不会足够强,因此圆环可能对帕马洛序 - 纯净的不稳定性(PPI)不稳定,产生强烈的质量四柱。这里,使用分析计算和平滑的粒子流体动力学模拟(SPH),开发了对这种TORI的演化的研究。特别是该工作的目标是确定GW波形并计算这些GWS的特征应变,以便看出它们是由激光干涉仪空间天线(LISA)可检测的。

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