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Effects of Arbitrarily Directed Field on Spin Phase Oscillations in Biaxial Molecular Magnets
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作者 HUHui ZHUJia-Lin 《Communications in Theoretical Physics》 SCIE CAS CSCD 2001年第6期751-758,共8页
Quantum phase interference and spin-parity effects are studied in biaxial molecular magnets in a magnetic field at an arbitrarily directed angle. The calculations of the ground-state tunnel splitting are performed on ... Quantum phase interference and spin-parity effects are studied in biaxial molecular magnets in a magnetic field at an arbitrarily directed angle. The calculations of the ground-state tunnel splitting are performed on the basis of the instanton technique in the spin-coherent-state path-integral representation, and complemented by exactly numerical diagonalization. Both the Wentzel–Kramers–Brillouin exponent and the pre-exponential factor are obtained for the entire region of the direction of the field. Our results show that the tunnel splitting oscillates with the field for the small field angle, while for the large field angle the oscillation is completely suppressed. This distinct angular dependence, together with the dependence of the tunnel splitting on the field strength, provides an independent test for spin-parity effects in biaxial molecular magnets. The analytical results for the molecular magnet are found to be in good agreement with the numerical simulations, which suggests that even the molecular magnet with total spin is large enough to be treated as a giant spin system. 展开更多
关键词 macroscopic quantum coherence molecular meliculare magnets spin-parity effects Fe-8
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人体与哺乳动物的生物钟同步机制及疾病 被引量:4
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作者 黄海鹏 傅肃能 《科学通报》 EI CAS CSCD 北大核心 2017年第25期2857-2866,共10页
由于地球的自转,地球表面的光照和温度会产生以24 h为周期的节律性波动.与之相适应地,近地表生物的新陈代谢、生长发育、细胞周期等也会随着昼夜更替而改变,形成稳定的昼夜节律.昼夜节律是生命体在自然环境中经过漫长的演化而产生的,但... 由于地球的自转,地球表面的光照和温度会产生以24 h为周期的节律性波动.与之相适应地,近地表生物的新陈代谢、生长发育、细胞周期等也会随着昼夜更替而改变,形成稳定的昼夜节律.昼夜节律是生命体在自然环境中经过漫长的演化而产生的,但它并不是简单的被动适应,而是由内在的生物钟驱动的,主动与环境进行匹配的过程.那么,生物钟到底是什么?它是如何运作的?生物钟重置的机理是什么?生物钟紊乱对人类的健康又有什么样的影响?这些都是我们关心并期待解答的问题. 展开更多
关键词 昼夜节律 生物钟 分子振荡系统 视交叉上核 肾上腺 生物钟同步机制 生物钟紊乱
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