Spin relaxation of radicals in cryptochrome and its role in avian magnetoreception
Long‐lived spin coherence and rotationally‐ordered radical pairs have previously been identified as key requirements for the radical pair mechanism of the avian magnetic compass sense. Both criteria are hard to meet in a biological environment, where thermal motion of the radicals creates dynamic di...
主要な著者: | Hore, P, Kattnig, D, Worster, S |
---|---|
フォーマット: | Journal article |
出版事項: |
American Institute of Physics
2016
|
類似資料
-
Spin relaxation of radicals in cryptochrome and its role in avian magnetoreception
著者:: Worster, S, 等
出版事項: (2016) -
Electron spin relaxation in cryptochrome-based magnetoreception
著者:: Kattnig, DR, 等
出版事項: (2016) -
Alternative radical pairs for cryptochrome-based magnetoreception.
著者:: Lee, A, 等
出版事項: (2014) -
Proposal to use superparamagnetic nanoparticles to test the role of cryptochrome in magnetoreception
著者:: Worster, S, 等
出版事項: (2018) -
Nuclear polarization effects in cryptochrome-based magnetoreception
著者:: Wong, SY, 等
出版事項: (2021)