论文标题
搜索带有引力波的一般二元灵感
Searching for General Binary Inspirals with Gravitational Waves
论文作者
论文摘要
我们研究是否可以使用二进制黑洞模板库来搜索一般二进制结合发出的引力波。要从嘈杂的数据中恢复二进制信号,通常需要匹配过滤技术。对于低质量系统尤其如此,总质量$ M \ Lessim 10 \,m_ \ odot $,可以在Ligo和Mive频率带中进行数千个周期的灵感。在本文中,我们专注于低质量二元系统的可检测性,其单个组件可以具有大型自旋诱导的四极矩和小紧凑性。四极有助于波形的相位演变,而紧凑性会影响二进制的合并频率。我们发现,在广泛的参数空间上,无法可靠地使用二进制黑洞模板(具有无量纲四极$κ= 1 $)。如果一般对象高度旋转并且比其二元伴侣大的质量大,则尤其如此。由二进制组成的二进制物可以在Ligo和处女座频带中合并,从而降低其在灵感方面的累积信噪比。因此,必须构建包含这些更通用波形的模板库。这些扩展的银行将使我们能够现实地搜索新的天体物理和标准模型紧凑对象的存在。
We study whether binary black hole template banks can be used to search for the gravitational waves emitted by general binary coalescences. To recover binary signals from noisy data, matched-filtering techniques are typically required. This is especially true for low-mass systems, with total mass $M \lesssim 10 \, M_\odot$, which can inspiral in the LIGO and Virgo frequency bands for thousands of cycles. In this paper, we focus on the detectability of low-mass binary systems whose individual components can have large spin-induced quadrupole moments and small compactness. The quadrupole contributes to the phase evolution of the waveform whereas the compactness affects the merger frequency of the binary. We find that binary black hole templates (with dimensionless quadrupole $κ=1$) cannot be reliably used to search for objects with large quadrupoles ($κ\gtrsim 20$) over a wide range of parameter space. This is especially true if the general object is highly spinning and has a larger mass than its binary companion. A binary that consists of objects with small compactness could merge in the LIGO and Virgo frequency bands, thereby reducing its accumulated signal-to-noise ratio during the inspiraling regime. Template banks which include these more general waveforms must therefore be constructed. These extended banks would allow us to realistically search for the existence of new astrophysical and beyond the Standard Model compact objects.