论文标题
用太空重力波干涉仪测量单个二进制白色矮人
Measuring Individual Masses of Binary White Dwarfs with Space-based Gravitational-wave Interferometers
论文作者
论文摘要
与在地面探测器的观察期间显着呼叫的黑洞和中子星的重力波不同,来自二元白色矮人的重力波几乎是单色的。这使得衡量他们的个体群众极具挑战性。在这里,我们采用了一种新颖的方法,即使用有限尺寸的效果并应用某些普遍关系来使用LISA测量二元白矮人的个体质量。我们发现质量,惯性矩和白矮人的潮汐变形性之间的准全宇宙关系不依赖于白矮人的组成。这些关系使我们能够在质量方面重写波形中惯性和潮汐变形的时刻。然后,我们进行了一项Fisher分析,以估算一个可以从CHIRP质量和有限尺寸的测量值中测量单个质量的准确度。我们发现,如果初始频率足够高($ \ sim 0.02 $ hz),并且二进制分离很小($ \ sim 1 $ kpc),则可以用LISA测量单个白色矮人质量,以进行4年观察,或者群众相对较大$(m \ gtrsim 0.8m_ \ odot)$。这开辟了一种新的可能性,可以测量具有空间干涉仪的二元白色矮人的个别质量。
Unlike gravitational waves from merging black holes and neutron stars that chirp significantly over the observational period of ground-based detectors, gravitational waves from binary white dwarfs are almost monochromatic. This makes it extremely challenging to measure their individual masses. Here, we take a novel approach of using finite-size effects and applying certain universal relations to measure individual masses of binary white dwarfs using LISA. We found quasi-universal relations among the mass, moment of inertia, and tidal deformability of a white dwarf that do not depend sensitively on the white dwarf composition. These relations allow us to rewrite the moments of inertia and tidal deformabilities in the waveform in terms of the masses. We then carried out a Fisher analysis to estimate how accurately one can measure the individual masses from the chirp mass and finite-size measurements. We found that the individual white dwarf masses can be measured with LISA for a 4-year observation if the initial frequency is high enough ($\sim 0.02$Hz) and either the binary separation is small ($\sim 1$kpc) or the masses are relatively large $(m \gtrsim 0.8M_\odot)$. This opens a new possibility of measuring individual masses of binary white dwarfs with space-based interferometers.