中文

基于原子、分子与光学(AMO)技术的天体物理展望

原子物理 2018-11-16 v1 天体物理仪器与方法 应用物理 化学物理 计算物理

摘要

大约两代人之前,AMO 科学的很大一部分由实验高能碰撞研究和微扰理论方法主导。此后,AMO 科学经历了转型,现由量子、超冷和超快研究主导。但在此过程中,该领域越过了介于这两个极端之间的复杂性。宇宙的大部分正位于这一中间区域。我们提出,AMO 科学的下一个前沿是探索描述大部分宇宙的 AMO 复杂性。

关键词

引用

@article{arxiv.1811.06157,
  title  = {Perspectives on Astrophysics Based on Atomic, Molecular, and Optical (AMO) Techniques},
  author = {Daniel Wolf Savin and James F. Babb and Paul M. Bellan and Crystal Brogan and Jan Cami and Paola Caselli and Lia Corrales and Gerardo Dominguez and Steven R. Federman and Chris J. Fontes and Richard Freedman and Brad Gibson and Leon Golub and Thomas W. Gorczyca and Michael Hahn and Sarah M. Hörst and Reggie L. Hudson and Jeffrey Kuhn and James E. Lawler and Maurice A. Leutenegger and Joan P. Marler and Michael C. McCarthy and Brett A. McGuire and Stefanie N. Milam and Nicholas A. Murphy and Gillian Nave and Aimee A. Norton and Anthony Papol and John C. Raymond and Farid Salama and Ella M. Sciamma-O'Brien and Randall Smith and Chad Sosolik and Clara Sousa-Silva and Phillip C. Stancil and Frank Timmes and Virginia L. Trimble and Bradford J. Wargelin},
  journal= {arXiv preprint arXiv:1811.06157},
  year   = {2018}
}

备注

White paper submission to the Decadal Assessment and Outlook Report on Atomic, Molecular, and Optical (AMO) Science (AMO 2020)