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Power Spectrum of Gravitational Waves from Unbound Compact Binaries

机译:来自未结合的紧凑型二进制文件的引力波的功率谱

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Unbound interacting compact binaries emit gravitational radiation in a wide frequency range. Since short burst-like signals are expected in future detectors, such as LISA or advanced LIGO, it is interesting to study their energy spectrum and the position of the frequency peak. Here we derive them for a system of massive objects interacting on hyperbolic orbits within the quadrupole approximation, following the work of Capozziello et al. In particular, we focus on the derivation of an analytic formula for the energy spectrum of the emitted waves. Within numerical approximation our formula is in agreement with the two known limiting cases: for the eccentricity ε = 1, the parabolic case, whose spectrum was computed by Berry and Gair, and the large ε limit with the formula given by Turner.
机译:未结合的相互作用紧凑型二进制文件在宽频范围内发出重力辐射。由于在未来的探测器(例如LISA或高级LIGO)等短脉冲突发信号中,研究其能谱和频率峰的位置是有趣的。在Hapozziello等人的工作之后,我们将它们导出了在四元近似的双臂轨道内的双曲线轨道中的巨大物体系统。特别是,我们专注于发射波的能谱的分析公式的推导。在数值近似下,我们的公式与两个已知的限制情况一致:对于偏心ε= 1,抛物面案例,其频谱由浆果和河流计算,以及由特纳给出的公式的大ε限制。

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