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首页> 外文期刊>Physical review >Trapping effects in wave-packet scattering in a double-quantum-dot Aharonov-Bohm interferometer
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Trapping effects in wave-packet scattering in a double-quantum-dot Aharonov-Bohm interferometer

机译:双量子点Aharonov-Bohm干涉仪在波包散射中的陷获效应

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An exact analytical solution for the time evolution of cutoff Gaussian wave packets scattered by a double-quantum-dot Aharonov-Bohm interferometer is derived to analyze the trapping effects of the molecular states of the system. Our analysis reveals that the formation and decay of a quasistationary state at the Fano resonance produces a monochromatic emission embedded in the transmitted packet, characterized by a dominant frequency Ω_(av) = ε_n/h with a finite time duration, where ε_n is the Fano resonance energy. We demonstrate that the duration of this coherent emission can be extended by narrowing the Fano resonance with appropriate variations of the Aharonov-Bohm phase. This emission is switched off in the limit of zero width, where the localization of the associated molecular state occurs.
机译:推导了由双量子点Aharonov-Bohm干涉仪散射的截止高斯波包的时间演化的精确解析解,以分析系统分子态的俘获效应。我们的分析表明,在Fano共振下准静态状态的形成和衰减会在发射的数据包中嵌入单色发射,其特征是在有限的持续时间内具有主导频率Ω_(av)=ε_n/ h,其中ε_n是Fano共振能量。我们证明,通过适当地改变Aharonov-Bohm相的Fano共振,可以延长该相干发射的持续时间。在零宽度的极限处关闭该发射,在该极限处发生相关分子状态的定位。

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