Bargueño Pedro
Departamento de Física, Universidad de los Andes, Apartado Aéreo, Bogotá, Distrito Capital, Colombia.
Chirality. 2015 Jun;27(6):375-81. doi: 10.1002/chir.22439. Epub 2015 Apr 28.
In this review, parity-violating gravitational potentials are presented as possible sources of both true and false chirality. In particular, whereas phenomenological long-range spin-dependent gravitational potentials contain both truly and falsely chiral terms, it is shown that there are models that extend general relativity including also coupling of fermionic degrees of freedom to gravity in the presence of torsion, which give place to short-range truly chiral interactions similar to that usually considered in molecular physics. Physical mechanisms which give place to gravitational parity violation together with the expected size of the effects and their experimental constraints are discussed. Finally, the possible role of parity-violating gravity in the origin of homochirality and a road map for future research works in quantum chemistry is presented.
在本综述中,宇称破缺引力势被视为真手性和假手性的可能来源。特别是,现象学的长程自旋相关引力势同时包含真手性项和假手性项,然而研究表明,存在一些扩展广义相对论的模型,其中还包括在存在挠率的情况下费米子自由度与引力的耦合,这会产生类似于分子物理学中通常考虑的短程真手性相互作用。文中讨论了导致引力宇称破缺的物理机制、效应的预期大小及其实验限制。最后,介绍了宇称破缺引力在同手性起源中的可能作用以及量子化学未来研究工作的路线图。