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首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Nonlinear response of single-molecule magnets: Field-tuned quantum-to-classical crossovers
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Nonlinear response of single-molecule magnets: Field-tuned quantum-to-classical crossovers

机译:单分子磁体的非线性响应:场调谐量子-经典分频器

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摘要

Quantum nanomagnets can show a field dependence of the relaxation time very different from their classical counterparts, due to resonant tunneling via excited states (near the anisotropy barrier top). The relaxation time then shows minima at the resonant fields H_n ∝ nD at which the levels at both sides of the barrier become degenerate (D is the anisotropy constant). We showed that in Mn_(12), near zero field, this yields a contribution to the nonlinear susceptibility that makes it qualitatively different from the classical curves [Phys. Rev. B 72, 224433 (2005)]. Here we extend the experimental study to finite dc fields showing how the bias can trigger the system to display those quantum nonlinear responses, near the resonant fields, while recovering a classical-like behaviour for fields between them. The analysis of the experiments is done with heuristic expressions derived from simple balance equations and calculations with a Pauli-type quantum master equation.
机译:由于通过激发态(在各向异性势垒顶部附近)的共振隧穿,量子纳米磁铁可以显示出与弛豫时间的场相关性,与弛豫时间非常不同。然后,弛豫时间在共振场H_n ∝ nD处显示最小值,在该处,势垒两侧的能级退化(D为各向异性常数)。我们发现,在Mn_(12)接近零场的情况下,这对非线性磁化率做出了贡献,使其在质量上与经典曲线不同。修订版B 72,224433(2005)]。在这里,我们将实验研究扩展到有限的直流场,以显示偏置如何触发系统在共振场附近显示那些量子非线性响应,同时为它们之间的场恢复经典的行为。通过从简单的平衡方程式导出的启发式表达式以及Pauli型量子主方程式的计算来进行实验分析。

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