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手性分子中宇称不守恒的高分辨率光谱研究及理论

High-resolution spectroscopic studies and theory of parity violation in chiral molecules.

作者信息

Quack Martin, Stohner Jürgen, Willeke Martin

机构信息

ETH Zürich Laboratorium für Physikalische Chemie, CH-8093 Zürich, Switzerland.

出版信息

Annu Rev Phys Chem. 2008;59:741-69. doi: 10.1146/annurev.physchem.58.032806.104511.

Abstract

We review the high-resolution spectroscopic approach toward the study of intramolecular dynamics, emphasizing molecular parity violation. Theoretical work in the past decade has shown that parity-violating potentials in chiral molecules are much larger (typically one to two orders of magnitude) than anticipated on the basis of older theories. This makes experimental approaches toward small molecular parity-violating effects promising. The concepts and results of intramolecular dynamics derived from spectroscopy are analyzed as a sequence of symmetry breakings. We summarize the concepts of symmetry breakings (de facto and de lege) in view of parity violation in chiral molecules. The experimental schemes and the current status of spectroscopic experiments on molecular parity violation are established. We discuss the promises of detecting and accurately measuring parity-violating energy differences Delta(pv) E on the order of 10(11) J mol(1) (approximately 100 aeV) in enantiomers of chiral molecules with regard to their contribution to fundamental physics in the framework of the standard model of particle physics and more speculative future fundamental symmetry tests such as for the combined charge conjugation, parity, and time-reversal (CPT) symmetry violation.

摘要

我们回顾了用于研究分子内动力学的高分辨率光谱方法,重点是分子宇称破缺。过去十年的理论研究表明,手性分子中的宇称破缺势比基于旧理论预期的要大得多(通常大一个到两个数量级)。这使得研究小分子宇称破缺效应的实验方法具有前景。从光谱学推导得出的分子内动力学的概念和结果被分析为一系列对称性破缺。鉴于手性分子中的宇称破缺,我们总结了对称性破缺(实际的和法律上的)的概念。确立了分子宇称破缺光谱实验的实验方案和现状。我们讨论了在手性分子对映体中检测并精确测量约10⁻¹¹ J mol⁻¹(约100 aeV)量级的宇称破缺能量差Δ(pv)E的前景,这涉及到它们在粒子物理学标准模型框架内对基础物理学的贡献,以及更具推测性的未来基础对称性测试,例如关于联合电荷共轭、宇称和时间反演(CPT)对称性破缺的测试。

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