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The radical pair mechanism and the avian chemical compass: Quantum coherence and entanglement

机译:自由基对机制和禽类化学罗盘:量子相干和纠缠

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We review the spin radical pair mechanism which is a promising explanation of avian navigation. This mechanism is based on the dependence of product yields on (1) the hyperfine interaction involving electron spins and neighboring nuclear spins and (2) the intensity and orientation of the geomagnetic field. This review describes the general scheme of chemical reactions involving radical pairs generated from singlet and triplet precursors; the spin dynamics of the radical pairs; and the magnetic field dependence of product yields caused by the radical pair mechanism. The main part of the review includes a description of the chemical compass in birds. We review: the general properties of the avian compass; the basic scheme of the radical pair mechanism; the reaction kinetics in cryptochrome; quantum coherence and entanglement in the avian compass; and the effects of noise. We believe that the quantum avian compass can play an important role in avian navigation and can also provide the foundation for a new generation of sensitive and selective magnetic-sensing nano-devices. (c) 2015 Wiley Periodicals, Inc.
机译:我们审查了自旋自由基对机制,这是鸟类导航的有希望的解释。该机制基于产品产量的依赖性(1)涉及电子自旋和邻近核自旋的超精细相互作用,以及(2)地磁场的强度和方向。这篇综述描述了涉及从单重态和三重态前体产生的自由基对的化学反应的一般方案;自由基对的自旋动力学;自由基对机理引起的产物产率的磁场依赖性。审查的主要部分包括对鸟类化学罗盘的描述。我们回顾一下:禽类罗盘的一般特性;自由基对机制的基本方案;隐色染料的反应动力学;禽类罗盘中的量子相干和纠缠;和噪音的影响。我们相信,量子禽类罗盘可以在禽类导航中发挥重要作用,也可以为新一代灵敏和选择性的磁感应纳米设备提供基础。 (c)2015年威利期刊有限公司

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