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对弱磁场下隐花色素自由基对各向异性响应的量子力学洞察。

Quantum-mechanical insights into the anisotropic response of the cryptochrome radical pair to a weak magnetic field.

机构信息

Max Planck Institute for Medical Research, Jahnstrasse 29, 69120 Heidelberg, Germany.

出版信息

J Chem Phys. 2023 Jan 21;158(3):034303. doi: 10.1063/5.0133943.

Abstract

Cryptochrome photoreceptors contain a photochemically generated radical pair, which is thought to mediate sensing of the geomagnetic field direction in many living organisms. To gain insight into the response of the cryptochrome to a weak magnetic field, we have studied the quantum-mechanical hyperfine spin states of the radical pair. We identify quantum states responsible for the precise detection of the magnetic field direction, taking into account the strongly axial hyperfine interactions of each radical in the radical pair. The contribution of these states to the formation of the cryptochrome signaling state sharply increases when the magnetic field becomes orthogonal to the hyperfine axis of either radical. Due to such a response, the radical pair may be able to detect the particular field direction normal to the plane containing the hyperfine axes of the radicals.

摘要

隐花色素光受体含有光化学产生的自由基对,据认为它在许多生物中介导对地磁场方向的感知。为了深入了解隐花色素对弱磁场的响应,我们研究了自由基对的量子力学超精细自旋态。我们确定了负责精确检测磁场方向的量子态,同时考虑了自由基对中每个自由基的强轴向超精细相互作用。当磁场与任一自由基的超精细轴正交时,这些态对隐花色素信号状态形成的贡献急剧增加。由于这种响应,自由基对可能能够检测到垂直于包含自由基超精细轴的平面的特定磁场方向。

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