中文

MAQRO——BPS 2023 研究计划白皮书

量子物理 2022-02-04 v1 天体物理仪器与方法

摘要

拟议的MAQRO任务的目标是利用太空实现长自由落体时间、极端真空、纳重力和低温,以在宏观量子实验中检验物理基础。这将促成新型量子传感器的发展,并提供在量子物理与引力界面处探测量子物理基础的手段。早期研究表明该方案可行,但仍存在一些关键挑战,且需开发关键技术。这些新技术将为实现额外的科学目标开辟潜力。拟议的研究计划旨在推进最先进水平,并在太空中执行首次宏观量子实验。在本十年内,地面、微重力和太空中的实验将推动该拟议研究计划,以便在随后十年内实现MAQRO。

关键词

引用

@article{arxiv.2202.01535,
  title  = {MAQRO -- BPS 2023 Research Campaign Whitepaper},
  author = {Rainer Kaltenbaek and Markus Arndt and Markus Aspelmeyer and Peter F. Barker and Angelo Bassi and James Bateman and Alessio Belenchia and Joel Bergé and Sougato Bose and Claus Braxmaier and Bruno Christophe and Garrett D. Cole and Catalina Curceanu and Animesh Datta and Maxime Debiossac and Uroš Delić and Lajos Diósi and Andrew A. Geraci and Stefan Gerlich and Christine Guerlin and Gerald Hechenblaikner and Antoine Heidmann and Sven Herrmann and Klaus Hornberger and Ulrich Johann and Nikolai Kiesel and Thomas W. LeBrun and Gerard J. Milburn and James Millen and Makan Mohageg and David C. Moore and Gavin W. Morley and Stefan Nimmrichter and Lukas Novotny and Daniel K. L. Oi and Mauro Paternostro and C. Jess Riedel and Manuel Rodrigues and Loïc Rondin and Albert Roura and Wolfgang P. Schleich and Thilo Schuldt and Benjamin A. Stickler and Hendrik Ulbricht and Christian Vogt and Lisa Wörner},
  journal= {arXiv preprint arXiv:2202.01535},
  year   = {2022}
}

备注

9 pages, 2 figures, submitted as a Research Campaign Whitepaper for the BPS2023 Decadal Survey