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手征性的生命特征和基础物理。

Chiroptical signatures of life and fundamental physics.

机构信息

Department of Chemistry, University of Houston-Clear Lake, Houston, Texas, USA.

出版信息

Chirality. 2012 Sep;24(9):764-9. doi: 10.1002/chir.22076. Epub 2012 Jun 22.

Abstract

This paper aims to inspire experimentalists to carry out proposed new chiroptical experiments springing from the theoretical study of the role of parity violation in the origin of biomolecular homochirality and to provide a brief update on the current status of calculations of the electroweak parity-violating energy difference (PVED) between enantiomers. If the PVED did select life's handedness, we would expect to find life on other planets consistently using the same hand as terrestrial biochemistry. Much more importantly, even finding the "wrong" hand (rather than a racemic mixture) on another planet could be the homochiral signature of life, and we discuss our proposal for chiroptical detection of life on extra-solar planets. The PVED may also have an exciting future as a "molecular footprint" of fundamental physics: comparison of calculated PVEDs with measured values could one day allow chemists to do "table-top particle physics" more cheaply with improved chiroptical techniques instead of ever larger particle accelerators. We discuss our proposed chiroptical method to measure the PVED by using molecular beams. To our knowledge, optical rotation has not yet been measured in molecular beams, but the rewards of doing so include a host of other "first ever" results in addition to measurement of the PVED.

摘要

本文旨在启发实验人员开展新的手性实验,这些实验源于对生物分子手性起源中手性破缺的作用的理论研究,并简要介绍电弱手性破缺能量差 (PVED) 在手性识别方面的最新计算结果。如果 PVED 确实选择了生命的手性,我们预计在其他行星上会发现与地球生物化学一致的手性生命。更重要的是,即使在另一颗行星上发现了“错误”的手性(而不是外消旋混合物),也可能是生命的手性特征,我们讨论了我们对手性识别系外行星生命的建议。PVED 也可能作为基础物理学的“分子足迹”,具有令人兴奋的未来:随着手性技术的改进,计算出的 PVED 与测量值的比较,有朝一日可能会使化学家能够更廉价地进行“桌面粒子物理学”,而不是使用更大的粒子加速器。我们讨论了使用分子束测量 PVED 的拟议手性方法。据我们所知,分子束中的旋光性尚未被测量,但这样做的回报除了测量 PVED 之外,还包括许多其他“首次”的结果。

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