论文标题

波浪暗物质环境中的黑洞合并模拟

Black hole merger simulations in wave dark matter environments

论文作者

Bamber, Jamie, Aurrekoetxea, Josu C., Clough, Katy, Ferreira, Pedro G.

论文摘要

可以使用数值相对论模拟研究二进制黑洞合并与环境的相互作用。这些仅在合并前的短时间内开始,此时必须施加适当的初始条件。因此,关键任务是确定在进化阶段适合二进制及其环境的配置。在这项工作中,我们研究了相等的质量黑洞二进制文件周围的波暗物质的行为,发现存在一个首选的准平台曲线,与较重的质量暗物质相比,在多个轨道上持续存在并生长在多个轨道上。虽然不同的初始配置在几个轨道之后收敛到首选的准平台,但在此过程中会生成不需要的瞬态振荡,这可能会在简短的模拟运行中影响信号。我们还指出,由于物质的反应,将物质叠加到圆形二元上的圆形二进制会导致人为偏心的轨道,这是初始条件的效果,而不是暗物质的签名。我们讨论所需的进一步工作,以便可以比较与环境获得的波形与真空案例的比较。

The interaction of binary black hole mergers with their environments can be studied using numerical relativity simulations. These start only a short finite time before merger, at which point appropriate initial conditions must be imposed. A key task is therefore to identify the configuration that is appropriate for the binary and its environment at this stage of the evolution. In this work we study the behaviour of wave dark matter around equal mass black hole binaries, finding that there is a preferred, quasi-stationary profile that persists and grows over multiple orbits, in contrast to heavier mass dark matter where any overdensity tends to be dispersed by the binary motion. Whilst different initial configurations converge to the preferred quasi-stationary one after several orbits, unwanted transient oscillations are generated in the process, which may impact on the signal in short simulation runs. We also point out that naively superimposing the matter onto a circular binary results in artificially eccentric orbits due to the matter backreaction, which is an effect of the initial conditions and not a signature of dark matter. We discuss the further work required so that comparison of waveforms obtained with environments to vacuum cases can be done in a meaningful way.

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