Schultz Jonathan D, Yuly Jonathon L, Arsenault Eric A, Parker Kelsey, Chowdhury Sutirtha N, Dani Reshmi, Kundu Sohang, Nuomin Hanggai, Zhang Zhendian, Valdiviezo Jesús, Zhang Peng, Orcutt Kaydren, Jang Seogjoo J, Fleming Graham R, Makri Nancy, Ogilvie Jennifer P, Therien Michael J, Wasielewski Michael R, Beratan David N
Department of Chemistry, Duke University, Durham, North Carolina 27708, United States.
Department of Chemistry, Northwestern University, Evanston, Illinois 60208, United States.
Chem Rev. 2024 Nov 13;124(21):11641-11766. doi: 10.1021/acs.chemrev.3c00643. Epub 2024 Oct 23.
Coherence refers to correlations in waves. Because matter has a wave-particle nature, it is unsurprising that coherence has deep connections with the most contemporary issues in chemistry research (e.g., energy harvesting, femtosecond spectroscopy, molecular qubits and more). But what does the word "coherence" really mean in the context of molecules and other quantum systems? We provide a review of key concepts, definitions, and methodologies, surrounding coherence phenomena in chemistry, and we describe how the terms "coherence" and "quantum coherence" refer to many different phenomena in chemistry. Moreover, we show how these notions are related to the concept of an interference pattern. Coherence phenomena are indeed complex, and ambiguous definitions may spawn confusion. By describing the many definitions and contexts for coherence in the molecular sciences, we aim to enhance understanding and communication in this broad and active area of chemistry.
相干性指的是波中的相关性。由于物质具有波粒二象性,因此相干性与化学研究中的最前沿问题(例如,能量收集、飞秒光谱学、分子量子比特等等)有着深刻联系也就不足为奇了。但是,在分子和其他量子系统的背景下,“相干性”这个词究竟是什么意思呢?我们综述了围绕化学中相干现象的关键概念、定义和方法,并描述了“相干性”和“量子相干性”这两个术语如何指代化学中的许多不同现象。此外,我们展示了这些概念与干涉图样概念之间的关系。相干现象确实很复杂,模糊的定义可能会引发混淆。通过描述分子科学中相干性的多种定义和背景,我们旨在增进对这一广泛且活跃的化学领域的理解与交流。