论文标题

使用GPU加速反应模型评估LISA轨道近似值的数据分析影响

Assessing the data-analysis impact of LISA orbit approximations using a GPU-accelerated response model

论文作者

Katz, Michael L., Bayle, Jean-Baptiste, Chua, Alvin J. K., Vallisneri, Michele

论文摘要

重力波(GW)数据集的分析基于测量时间序列与检测器对各种源参数响应的理论模板的比较。对于丽莎而言,主要的科学可观察物将是所谓的时间延迟干涉法(TDI)组合,它抑制了原本压倒性的激光噪声。计算对GW的TDI响应涉及将GW极化投射到Lisa星座上,然后将投影组合到沿臂沿臂的倍数传播时间延迟的投影。对于通用Lisa轨道和GW信号,这两种计算都难以有效地执行。目前在实践中使用了各种近似值,例如假设恒定和相等的臂章,从而产生分析性TDI表达式。在本文中,我们介绍了“ FastLisaresponse”,这是一种新的有效GPU加速代码,可在时间域中实现对GWS的通用TDI响应。我们使用它来表征通过使用等距长度近似分析响亮的银河二进制信号而产生的参数估计偏差。我们得出的结论是,如果要在实际LISA数据中获得高(但合理)的SNR源的最佳准确性,则应将等值的参数估计代码升级到通用响应。

The analysis of gravitational wave (GW) datasets is based on the comparison of measured time series with theoretical templates of the detector's response to a variety of source parameters. For LISA, the main scientific observables will be the so-called time-delay interferometry (TDI) combinations, which suppress the otherwise overwhelming laser noise. Computing the TDI response to GW involves projecting the GW polarizations onto the LISA constellation arms, and then combining projections delayed by a multiple of the light propagation time along the arms. Both computations are difficult to perform efficiently for generic LISA orbits and GW signals. Various approximations are currently used in practice, e.g., assuming constant and equal armlengths, which yields analytical TDI expressions. In this article, we present 'fastlisaresponse', a new efficient GPU-accelerated code that implements the generic TDI response to GWs in the time domain. We use it to characterize the parameter-estimation bias incurred by analyzing loud Galactic-binary signals using the equal-armlength approximation. We conclude that equal-armlength parameter-estimation codes should be upgraded to the generic response if they are to achieve optimal accuracy for high (but reasonable) SNR sources within the actual LISA data.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源