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首页> 外文期刊>Physical Review, B. Condensed Matter >HAMILTONIAN APPROACH TO THE TRANSPORT PROPERTIES OF SUPERCONDUCTING QUANTUM POINT
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HAMILTONIAN APPROACH TO THE TRANSPORT PROPERTIES OF SUPERCONDUCTING QUANTUM POINT

机译:超导量子点传输特性的哈密顿方法

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摘要

A microscopic theory of the transport properties of quantum point contacts giving a unified description of the normal conductor-superconductor (N-S) and superconductor-superconductor (S-S) cases is presented. It is based on a model Hamiltonian describing charge transfer processes in the contact region and makes use of nonequilibrium Green function techniques for the calculation of the relevant quantities. It is explicitly shown that when calculations are performed up to infinite order in the coupling between the electrodes, the theory contains all known results predicted by the more usual scattering approach for N-S and S-S contacts. For the latter we introduce a specific formulation for dealing with the nonstationary transport properties. An efficient algorithm is developed for obtaining the de and ac current components, which allows a detailed analysis of the different current-voltage characteristics for all range of parameters. We finally address the less understood small bias limit, for which some analytical results can be obtained within the present formalism. It is shown that four different physical regimes can be reached in this limit depending on the values of the inelastic scattering rate and the contact transmission. The behavior of the system in these regimes is discussed together with the conditions for their experimental observability. [References: 48]
机译:提出了量子点接触传输特性的微观理论,对普通导体-超导体(N-S)和超导体-超导体(S-S)情况进行了统一描述。它基于描述接触区域中电荷转移过程的哈密顿模型,并利用非平衡格林函数技术来计算相关量。明确显示出,当在电极之间的耦合中执行无限次的计算时,该理论包含了由N-S和S-S接触的更常用散射方法预测的所有已知结果。对于后者,我们介绍了一种用于处理非平稳运输特性的特定公式。开发了一种用于获取de和ac电流分量的有效算法,该算法允许对所有参数范围的不同电流-电压特性进行详细分析。我们最终解决了鲜为人知的小偏差限制,对于该偏差可以在当前形式主义中获得一些分析结果。结果表明,根据非弹性散射率和接触透射率的值,可以在此极限下达到四种不同的物理状态。讨论了系统在这些状态下的行为以及它们的实验可观察性的条件。 [参考:48]

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