论文标题
通过优化量子噪声的参数,包括衍射损失的影响,提高了Decigo中目标灵敏度
Improvement of the target sensitivity in DECIGO by optimizing its parameters for quantum noise including the effect of diffraction loss
论文作者
论文摘要
Decigo是外太空中未来的日本重力波检测器。以前,我们设置了默认设计参数,以提供良好的目标灵敏度来检测原始引力波(GWS)。但是,普朗克观察结果的最新原始GW上限促使我们进一步优化了目标灵敏度。以前,由于腔长很长,我们没有考虑过光学衍射损失。在本文中,我们通过最大化信噪比(SNR)来优化各种Decigo参数,以使原始GWS与量子噪声(包括衍射损耗的影响)。我们利用一个差异Fabry-Perot干涉仪的量子噪声评估了一个群集的功率谱密度。然后,我们通过将两个簇在同一位置相关联来计算SNR。我们对两种情况进行了优化:恒定的镜像壳和恒定的镜像情况。结果,我们获得了SNR对镜像半径的依赖性,这也决定了各种Decigo参数。该结果是通过考虑镜像维度上的实际约束并实施其他噪声源来优化Decigo设计的第一步。
DECIGO is the future Japanese gravitational wave detector in outer space. We previously set the default design parameters to provide a good target sensitivity to detect the primordial gravitational waves (GWs). However, the updated upper limit of the primordial GWs by the Planck observations motivated us for further optimization of the target sensitivity. Previously, we had not considered optical diffraction loss due to the very long cavity length. In this paper, we optimize various DECIGO parameters by maximizing the signal-to-noise ratio (SNR), for the primordial GWs to quantum noise including the effects of diffraction loss. We evaluated the power spectrum density for one cluster in DECIGO utilizing the quantum noise of one differential Fabry-Perot interferometer. Then we calculated the SNR by correlating two clusters in the same position. We performed the optimization for two cases: the constant mirror-thickness case and the constant mirror-mass case. As a result, we obtained the SNR dependence on the mirror radius, which also determines various DECIGO parameters. This result is the first step toward optimizing the DECIGO design by considering the practical constraints on the mirror dimension and implementing other noise sources.