Spider优化II:光学、磁场和前景效应
宇宙学与河外天体物理
2015-05-27 v1 天体物理仪器与方法
摘要
Spider是一种气球载仪器,旨在以度尺度分辨率绘制大面积天空的宇宙微波背景(CMB)偏振。Spider的主要目标是测量原初引力波的振幅,通过它们对CMB偏振的印记,如果张量-标量比r大于0.03。为了实现这一目标,必须以前所未有的精度控制仪器系统误差。在此,我们基于先前的工作,使用Spider观测模拟来检查通过测试和建模各种仪器组件所表征的几个系统效应的影响。特别地,我们研究了半波片非理想光谱响应、焦平面组件与地球磁场的耦合以及波束失配和非对称性的影响。我们还提出了一个基于银河系磁场和尘埃三维模型的弥散偏振前景发射模型,并研究了该前景发射与我们的观测策略和仪器效应的相互作用。我们发现,预期的前景和系统污染水平足够低,Spider可以实现其科学目标。
引用
@article{arxiv.1102.0559,
title = {Spider Optimization II: Optical, Magnetic and Foreground Effects},
author = {D. T. O'Dea and P. A. R. Ade and M. Amiri and S. J. Benton and J. J. Bock and J. R. Bond and J. A. Bonetti and S. Bryan and B. Burger and H. C. Chiang and C. N. Clark and C. R. Contaldi and B. P. Crill and G. Davis and O. Dore and M. Farhang and J. P. Filippini and L. M. Fissel and A. A. Fraisse and N. N. Gandilo and S. Golwala and J. E. Gudmundsson and M. Hasselfield and G. Hilton and W. Holmes and V. V. Hristov and K. Irwin and W. C. Jones and C. L. Kuo and C. J. MacTavish and P. V. Mason and T. E. Montroy and T. A. Morford and C. B. Netterfield and A. S. Rahlin and C. Reintsema and J. E. Ruhl and M. C. Runyan and M. A. Schenker and J. A. Shariff and J. D. Soler and A. Trangsrud and C. Tucker and R. S. Tucker and A. D. Turner and D. Wiebe},
journal= {arXiv preprint arXiv:1102.0559},
year = {2015}
}
备注
submitted to APJ, 15 pages, 12 figures