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Spin tunneling properties in mesoscopic magnets: effects of a magnetic field

机译:介观磁体中的自旋隧穿特性:磁场的影响

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The tunneling of a giant spin at excited levels is studied theoretically in mesoscopic magnets with a magnetic field at an arbitrary angle in the easy plane. Different structures of the tunneling barriers can be generated by the magnetocrystalline anisotropy, the magnitude and the orientation of the field. By calculating the nonvacuum instanton solution explicitly, we obtain the tunnel splittings and the tunneling rates for different angle ranges of the external magnetic field (θ_H = π/2 and 250L?2 < θ_H < π). The temperature dependences of the decay rates are clearly shown for each case. It is found that the tunneling rate and the crossover temperature depend on the orientation of the external magnetic field. This feature can be tested with the use of existing experimental techniques.
机译:在介观磁体中,在易平面内以任意角度产生磁场的情况下,从理论上研究了巨自旋在激发能级上的隧穿。可以通过磁晶各向异性,磁场的大小和方向来产生隧道势垒的不同结构。通过显式地计算非真空瞬时解,我们获得了外部磁场不同角度范围(θ_H=π/ 2和250L?2 <θ_H<π)的隧穿分裂和隧穿速率。在每种情况下,衰变速率的温度依赖性都清楚显示。发现隧穿速率和交叉温度取决于外部磁场的取向。可以使用现有的实验技术来测试此功能。

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