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首页> 外文期刊>Physica, B. Condensed Matter >Controllable multiple-quantum transitions in a T-shaped small quantum dot-ring system
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Controllable multiple-quantum transitions in a T-shaped small quantum dot-ring system

机译:T形小量子点环系统中的可控多量子跃迁

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Based on the tight-binding model and the slave boson mean field approximation, we investigate the electron transport properties in a small quantum dot (QD)-ring system. Namely, a strongly correlated QD not only attaches directly to two normal metallic electrodes, but also forms a magnetic control Aharonov-Bohm quantum ring with a few noninteracting QDs. We show that the parity effect, the Kondo effect, and the multiple Fano effects coexist in our system. Moreover, the parities, defined by the odd and even-numbered energy levels in this system, can be switched by adjusting magnetic flux phase phi located at the center of the quantum ring, which induces multiple controllable Fano-interference energy pathways. Therefore, the constructive and destructive multi-Fano interference transition, the Kondo and Fano resonance transition at the Fermi level, the Fano resonance and ani-resonance transition are realized in the even parity system. They can also be observed in the odd parity system when one adjusts the phase phi and the gate voltage V-g applied to the noninteracting QDs. The multi-quantum transitions determine some interesting transport properties such as the current switch and its multi-flatsteps, the differential conductance switch at zero bias voltage and its oscillation or quantization at the low bias voltage. These results may be useful for the observation of multiple quantum effect interplays experimentally and the design of controllable QD-based device. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于紧密束缚模型和从玻色子平均场近似,我们研究了在小量子点(QD)环系统中的电子传输性质。即,强相关的量子点不仅直接附着在两个普通的金属电极上,而且还形成了具有少量非相互作用量子点的磁控制阿哈罗诺夫-鲍姆量子环。我们证明了奇偶效应,近藤效应和多个Fano效应在我们的系统中共存。此外,可以通过调节位于量子环中心的磁通量相位phi来切换由该系统中的奇数和偶数能级定义的奇偶性,这会引发多个可控的Fano干扰能级路径。因此,在偶数奇偶校验系统中实现了建设性和破坏性的多费诺干涉跃迁,费米能级的近藤和费诺共振跃迁,费诺共振和ani共振跃迁。当人们调整相位phi和施加到非交互QD的栅极电压V-g时,也可以在奇数奇偶校验系统中观察到它们。多量子跃迁确定了一些有趣的传输特性,例如电流开关及其多平坦步长,零偏置电压下的差分电导开关以及低偏置电压下的振荡或量化。这些结果可用于实验上观察多个量子效应相互作用以及可控基于QD的设备的设计。 (C)2016 Elsevier B.V.保留所有权利。

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