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Multiscale description of avian migration: from chemical compass to behaviour modeling

机译:鸟类迁移的多尺度描述:从化学罗盘到行为建模

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摘要

Despite decades of research the puzzle of the magnetic sense of migratory songbirds has still not been unveiled. Although the problem really needs a multiscale description, most of the individual research efforts were focused on single scale investigations. Here we seek to establish a multiscale link between some of the scales involved, and in particular construct a bridge between electron spin dynamics and migratory bird behaviour. In order to do that, we first consider a model cyclic reaction scheme that could form the basis of the avian magnetic compass. This reaction features a fast spin-dependent process which leads to an unusually precise compass. We then propose how the reaction could be realized in a realistic molecular environment, and argue that it is consistent with the known facts about avian magnetoreception. Finally we show how the microscopic dynamics of spins could possibly be interpreted by a migrating bird and used for the navigational purpose.
机译:尽管进行了数十年的研究,但移徙鸣禽的磁感之谜仍未揭晓。尽管问题确实需要多尺度描述,但是大多数个人研究工作都集中在单尺度调查上。在这里,我们试图在一些涉及的尺度之间建立多尺度联系,特别是在电子自旋动力学和候鸟行为之间架起一座桥梁。为了做到这一点,我们首先考虑一个模型循环反应方案,该方案可以构成禽类磁罗盘的基础。这种反应具有快速的自旋相关过程,可导致异常精确的罗盘。然后,我们提出该反应如何在现实的分子环境中实现,并认为它与关于禽磁感受的已知事实是一致的。最后,我们展示了自旋的微观动力学如何可能由迁徙的鸟类解释并用于航行目的。

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