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Splitting of the Fano resonance by Coulomb interactions in a two-dot quantum ring

机译:通过两点量子环中的库仑相互作用来分裂法诺共振

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We study the splitting of the Fano resonance in a Aharonov-Bohm interferometer with a quantum dot in each of its arms. Both intra- and inter-dot Coulomb repulsions are taken into account by employing the Keldysh nonequilibrium Green's function technique. The single narrow Fano resonance in the noninteracting case is split into two in the presence of either intra- or inter-dot Coulomb interaction. We find that four Fano peaks emerge in the conductance or local density of states spectra when the two kinds of interactions exist simultaneously. Such behavior holds true for the accompanying broad Breit-Wigner type resonance. We also show that the positions of the Fano peaks can be tuned with the aid of the magnetic flux penetrating through the ring, which might have practical applications in device design or quantum computation.
机译:我们研究了在Aharonov-Bohm干涉仪中Fano共振的分裂,该干涉仪的每个臂中都有一个量子点。通过使用Keldysh非平衡格林函数技术,可以同时考虑点内和点间库仑排斥。在非交互情况下,单个狭窄的Fano共振在点内或点间库仑相互作用的情况下被分为两部分。我们发现,当两种相互作用同时存在时,在状态谱的电导或局部密度中会出现四个法诺峰。伴随广泛的Breit-Wigner型共振,这种行为是正确的。我们还表明,可以借助穿过环的磁通量来调整Fano峰的位置,这可能在设备设计或量子计算中具有实际应用。

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