SPT-3G:南极望远镜上的下一代宇宙微波背景偏振实验
天体物理仪器与方法
2015-06-22 v1 宇宙学与河外天体物理
摘要
我们描述了一种新型偏振敏感接收机 SPT-3G 的设计,该接收机用于 10 米口径的南极望远镜 (SPT)。SPT-3G 接收机的测绘速度将比当前接收机 SPTpol 提高约 20 倍。SPT-3G 接收机的灵敏度将实现从 B 模偏振各向异性功率的统计探测到高信噪比单模测量(即图谱)的跨越。这将能够对中微子质量总和施加精确约束(约 0.06 eV),并有望直接解决中微子质量层级问题。它将允许分离引力透镜 B 模功率谱和原初 B 模功率谱,从而改进对原初信号振幅和形状的约束,无论是仅通过 SPT-3G 数据,还是与观测同一天区的 BICEP-2/KECK 结合。小尺度温度各向异性的测量将为再电离时期提供新的约束。SPT-3G 巡天的额外科学成果将因与正在进行的暗能量巡天 (DES) 的协同作用而显著增强,包括:对大尺度结构光学示踪物偏置的 1% 约束、对星系团对微分多普勒信号的测量(将在约 200 Mpc 尺度上检验广义相对论),以及来自星系团丰度的改进宇宙学约束。
引用
@article{arxiv.1407.2973,
title = {SPT-3G: A Next-Generation Cosmic Microwave Background Polarization Experiment on the South Pole Telescope},
author = {B. A. Benson and P. A. R. Ade and Z. Ahmed and S. W. Allen and K. Arnold and J. E. Austermann and A. N. Bender and L. E. Bleem and J. E. Carlstrom and C. L. Chang and H. M. Cho and S. T. Ciocys and J. F. Cliche and T. M. Crawford and A. Cukierman and T. de Haan and M. A. Dobbs and D. Dutcher and W. Everett and A. Gilbert and N. W. Halverson and D. Hanson and N. L. Harrington and K. Hattori and J. W. Henning and G. C. Hilton and G. P. Holder and W. L. Holzapfel and K. D. Irwin and R. Keisler and L. Knox and D. Kubik and C. L. Kuo and A. T. Lee and E. M. Leitch and D. Li and M. McDonald and S. S. Meyer and J. Montgomery and M. Myers and T. Natoli and H. Nguyen and V. Novosad and S. Padin and Z. Pan and J. Pearson and C. L. Reichardt and J. E. Ruhl and B. R. Saliwanchik and G. Simard and G. Smecher and J. T. Sayre and E. Shirokoff and A. A. Stark and K. Story and A. Suzuki and K. L. Thompson and C. Tucker and K. Vanderlinde and J. D. Vieira and A. Vikhlinin and G. Wang and V. Yefremenko and K. W. Yoon},
journal= {arXiv preprint arXiv:1407.2973},
year = {2015}
}
备注
21 pages, 9 figures. To be published in Proceedings of SPIE Volume 9153. Presented at SPIE Astronomical Telescopes + Instrumentation 2014, conference 9153