书目名称 | High Precision Optical Spectroscopy and Quantum State Selected Photodissociation of Ultracold 88Sr2 |
编辑 | Mickey McDonald |
视频video | http://file.papertrans.cn/427/426456/426456.mp4 |
概述 | Nominated as an outstanding Ph.D. thesis by Columbia University.Presents insights into the development of molecular optical measurements of unprecedented precision.Offers a solution to the long-standi |
丛书名称 | Springer Theses |
图书封面 |  |
描述 | This thesis unites the fields of optical atomic clocks and ultracold molecular science, laying the foundation for optical molecular measurements of unprecedented precision. Building upon optical manipulation techniques developed by the atomic clock community, this work delves into attaining surgical control of molecular quantum states. The thesis develops two experimental observables that one can measure with optical-lattice-trapped ultracold molecules: extremely narrow optical spectra, and angular distributions of photofragments that are ejected when the diatomic molecules are dissociated by laser light pulses. The former allows molecular spectroscopy approaching the level of atomic clocks, leading into molecular metrology and tests of fundamental physics. The latter opens the field of ultracold chemistry through observation of quantum effects such as matter-wave interference of photofragments and tunneling through reaction barriers. The thesis also describes a discovery of a new method of thermometry that can be used near absolute zero temperatures for particles lacking cycling transitions, solving a long-standing experimental problem in atomic and molecular physics. |
出版日期 | Book 2018 |
关键词 | molecular clock; photoassociation spectroscopy; photodissociation spectroscopy; Zeeman shift; subradient |
版次 | 1 |
doi | https://doi.org/10.1007/978-3-319-68735-3 |
isbn_softcover | 978-3-319-88648-0 |
isbn_ebook | 978-3-319-68735-3Series ISSN 2190-5053 Series E-ISSN 2190-5061 |
issn_series | 2190-5053 |
copyright | Springer International Publishing AG 2018 |