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射频场对自由基对磁受体模型的影响。

Effect of radio frequency fields on the radical pair magnetoreception model.

作者信息

Xu Bao-Ming, Zou Jian, Li Hai, Li Jun-Gang, Shao Bin

机构信息

School of Physics, Beijing Institute of Technology, Beijing 100081, China.

School of Physics, Beijing Institute of Technology, Beijing 100081, China and School of Information and Electronic Engineering, Shandong Institute of Business and Technology, Yantai 264000, China.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2014 Oct;90(4):042711. doi: 10.1103/PhysRevE.90.042711. Epub 2014 Oct 13.

Abstract

Although the radical pair (RP) model is widely accepted for birds' orientation, the physical mechanism of it is still not fully understood. In this paper we consider the RP model in the total angular-momentum representation and clearly show a detailed mechanism for orientation. When only the vertical hyperfine (HF) coupling component is considered, analytical expressions of singlet yield angular profiles are obtained with and without considering the radio frequency field, and when the horizontal HF coupling components are considered, a numerical calculation of the singlet yield is given. Based on these analytical and numerical results we present a detailed account of the following issues: how the HF coupling induces the singlet-triplet conversion; why the vertical radio frequency field can disorient the birds, while the parallel one cannot; and why the birds are able to "train" to different field strengths. Finally, we consider a multinuclei RP model.

摘要

尽管自由基对(RP)模型被广泛接受用于解释鸟类的定向行为,但其物理机制仍未被完全理解。在本文中,我们在总角动量表示下考虑RP模型,并清晰地展示了一种详细的定向机制。当仅考虑垂直超精细(HF)耦合分量时,在考虑和不考虑射频场的情况下都获得了单重态产率角分布的解析表达式,而当考虑水平HF耦合分量时,给出了单重态产率的数值计算。基于这些解析和数值结果,我们详细阐述了以下问题:HF耦合如何诱导单重态 - 三重态转换;为什么垂直射频场会使鸟类迷失方向,而平行射频场则不会;以及为什么鸟类能够“训练”适应不同的场强。最后,我们考虑了多核RP模型。

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