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Magnetic-flux-induced persistent currents in nonlinear mesoscopic rings

机译:磁通磁通诱导的非线性介面环中的持续电流

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We investigate magnetic-flux-induced persistent currents (PCs) in a one-dimensional nonlinear mesoscopic ring based on the Frenkel-Kontorova (FK) model. By applying a transfer-matrix technique, the energy spectra, the PCs, and the Thouless exponent are theoretically obtained. It is shown that the energy spectrum splits into sub-bands when the on-site energy is gradually increased, and in the flux-dependent energy spectra, the energy levels show different behaviors over the transition by breaking of analyticity. Meanwhile, the PC is determined by the magnetic flux, the on-site energy, and the Fermi level. The increment of the on-site energy leads to a dramatic suppression of the PC. When the Fermi level is in the vicinity of "band" gaps, the PC is limited considerably; otherwise, the PC increases by several orders of magnitude. The suppressed PC is related to the electronic localization of the FK ring, which is described by the Thouless exponents. Our investigations provide detailed information about the influence of nonlinear structure on the PC and contribute to its potential application in quantum devices.
机译:我们研究在基于所述的Frenkel-Kontorova(FK)模型一维非线性介观环磁通诱导持续电流(PC)的。通过应用转移矩阵技术,理论上可以获得能量光谱,PC和无武指数。结果表明,能量谱分割成子带时现场能量逐渐增加,并且在焊剂依赖性能量谱,能量水平通过分析性断裂显示在过渡不同的行为。同时,PC由磁通量,现场能量和费米水平决定。现场能源的增量导致PC的剧烈抑制。当FERMI水平位于“乐队”差距附近时,PC大量限制;否则,PC增加了几个数量级。抑制的PC与FK环的电子定位有关,该电子定位由您的指数描述。我们的调查提供有关非线性结构对PC的影响的详细信息,并有助于其在量子器件中的潜在应用。

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