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Quantum tunneling in nanomagnetic systems with different uniaxial anisotropy order

机译:具有不同单轴各向异性阶数的纳米磁系统中的量子隧穿

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摘要

A study of macroscopic quantum tunneling (MQT) of the magnetic moment in systems with quadratic and higher order uniaxial anisotropy and Zeeman interaction is presented. By using the instanton technique, under the giant spin approximation, the escape rate or probability per unit of time Gamma that the system undergoes a transition between coherent or metastable states is calculated. Using an effective particle potential we also determine the escape temperature T-e(T), which marks the transition from quantum tunneling to thermal activation. A discussion is presented about the different models and the behavior of the magnetic system under the tunneling regime.
机译:提出了具有二次高阶单轴各向异性和塞曼相互作用的系统中磁矩的宏观量子隧穿(MQT)的研究。通过使用瞬时技术,在巨自旋近似下,计算出系统经历相干态或亚稳态之间转变的每单位时间Gamma的逃逸率或概率。使用有效的粒子电势,我们还可以确定逸出温度T-e(T),这标志着从量子隧穿到热活化的转变。讨论了在隧道状态下磁系统的不同模型和行为。

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