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Magnetic tunneling told to ignorants by two ignorants

机译:磁性隧道被两个无知的人告知无知的人

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Magnetic tunneling of a large spin subject to the Hamiltonian H = -DS_z~2 + BS_x~2 - _(gμB)H · S is investigated by elementary methods for weak fields H. In zero field (H = 0) the tunnel frequency in the ground state is found to be equal to Ds[1 + (2D/B) + 2 ((1 + D/B)D/B)~(1/2)]~(-S) multiplied by a quantity whose variation with s is slower than exponential. This result coincides with that of path integral methods [16]. For the values of the longitudinal field which allow tunneling, the tunnel frequency ωT is shown to vanish when H_y = 0 certain "diabolic" values of _(gμB)H_x/(D(D + B))~(1/2), in qualitative agreement with experiments by Wernsdorfer and Sessoli. The particular case H_z = 0 was already obtained by Garg by means of path integrals. The diabolic values of _(gμB)H_x/(B(D + B))~(1/2) are in agreement with numerical results but, as already noticed by Wernsdorfer and Sessoli, they disagree with the experimental ones. This may be an effect of higher order anisotropy terms, which is briefly addressed in the conclusion.
机译:通过基本方法研究了弱自旋磁场H下哈密顿量为H = -DS_z〜2 + BS_x〜2-_(gμB)H·S的大自旋的磁隧穿。在零场(H = 0)中,隧道频率为发现基态等于Ds [1 +(2D / B)+ 2((1 + D / B)D / B)〜(1/2)]〜(-S)乘以其变化量与s比指数慢。这个结果与路径积分法相一致[16]。对于允许隧穿的纵向场的值,当H_y = 0时,隧穿频率ωT消失,_(gμB)H_x /(D(D + B))〜(1/2),与Wernsdorfer和Sessoli的实验定性一致。 Garg已经通过路径积分获得了H_z = 0的特殊情况。 _(gμB)H_x /(B(D + B))〜(1/2)的双代谢值与数值结果一致,但正如Wernsdorfer和Sessoli所注意到的,它们与实验值不符。这可能是高阶各向异性项的影响,结论中对此进行了简要介绍。

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