论文标题
激光相对强度噪声在激光干涉仪空间天线中的影响
The influence of laser relative intensity noise in the Laser Interferometer Space Antenna
论文作者
论文摘要
丽莎(Lisa)是即将到来的ESA任务,它将通过对图表精度下的自由落体测试质量之间的分离来检测空间中的重力波。为了达到所需的性能,丽莎将采用减少降噪技术时间延迟干涉法(TDI),其中多次原始干涉读数时间被时间移动并合并为最终的科学可观察物。根据这些TDI变量评估性能需要仔细跟踪不同的噪声源如何通过TDI传播,因为噪声相关可能会以意外的方式影响性能。这种潜在相关噪声的一个例子是三个丽莎卫星上的六个激光器的相对强度噪声(RIN),这将融入干涉相测量中。在本文中,我们根据当前的任务体系结构和设想的缓解策略来计算预期的RIN水平。我们发现,对技术设计的严格要求将效果从大约8.7 pm/rthz的每间自动机间干涉仪到较低的subs-1 pm/rthz噪声的效果,其典型的特征是TDI后无关的读数噪声。我们的调查强调了对干涉测量值足够平衡检测的重要性。
LISA is an upcoming ESA mission that will detect gravitational waves in space by interferometrically measuring the separation between free-falling test masses at picometer precision. To reach the desired performance, LISA will employ the noise reduction technique time-delay interferometry (TDI), in which multiple raw interferometric readouts are time shifted and combined into the final scientific observables. Evaluating the performance in terms of these TDI variables requires careful tracking of how different noise sources propagate through TDI, as noise correlations might affect the performance in unexpected ways. One example of such potentially correlated noise is the relative intensity noise (RIN) of the six lasers aboard the three LISA satellites, which will couple into the interferometric phase measurements. In this article, we calculate the expected RIN levels based on the current mission architecture and the envisaged mitigation strategies. We find that strict requirements on the technical design reduce the effect from approximately 8.7 pm/rtHz per inter-spacecraft interferometer to that of a much lower sub-1 pm/rtHz noise, with typical characteristics of an uncorrelated readout noise after TDI. Our investigations underline the importance of sufficient balanced detection of the interferometric measurements.