论文标题

在正常金属/BCS-Superconductor连接中的光辅助电子传输的微观理论

Microscopic theory of photo-assisted electronic transport in normal-metal/BCS-superconductor junctions

论文作者

Bertin-Johannet, B., Rech, J., Jonckheere, T., Grémaud, B., Raymond, L., Martin, T.

论文摘要

我们研究了在正常的金属/bcs-螺旋体连接中使用微观汉密尔顿方法的照片辅助电子传输,用于在正常金属侧应用的几种定期电压驱动器。使用Keldysh-Nambu-Floquet方法计算出时间依赖的电流和照片辅助噪声。多余的噪声分析允许人们确定每个周期少数电子的纯电子激发在多大程度上可以由不同的驱动器产生。与驱动频率相比,超导差距很小时,对于带有整数电荷(Levitons)的Lorentzian电压驱动器,连接的行为就像正常的金属连接一样,并且达到了最小的多余噪声。在一个大间隙的相反机构中,多余的噪声消失了半量化的列维顿,从而使库珀对在超导方面的完美传播产生。当驱动频率与差距相当时,这种微观方法还使我们能够解决中间状态,从而使我们能够研究Andreev反射和Quasiparticle转移过程之间的非平凡相互作用。我们的分析还显示了Tien-Gordon型关系的出现,该关系将AC驱动的连接中的电流和噪声连接到其直流对应物,我们将详细研究。最后,使用现实的实验参数检查了使用此设置来构建可靠的库珀对按需源的可能性。

We investigate photo assisted electronic transport in a normal-metal/BCS-superconductor junction with a microscopic Hamiltonian approach, for several types of periodic voltage drives applied on the normal-metal side. The time-dependent current and the photo-assisted noise are computed to all orders of the tunneling Hamiltonian using a Keldysh-Nambu-Floquet approach. An excess noise analysis allows one to determine to what extent pure electronic excitations with a small number of electrons per period can be generated by the different drives. When the superconducting gap is small compared to the drive frequency, the junction behaves like a normal-metal junction and minimal excess noise is reached for Lorentzian voltage drives carrying an integer charge (levitons). In the opposite regime of a large-gap, the excess noise vanishes for half-quantized levitons, giving rise to the perfect transmission of a Cooper pair on the superconducting side. This microscopic approach also allows us to address the intermediate regime, when the drive frequency is comparable to the gap, allowing us to study the non-trivial interplay between Andreev reflection and quasiparticle-transfer processes. Our analysis also shows the appearance of Tien-Gordon-type relations connecting the current and noise in the AC-driven junction to their DC counterpart, which we investigate in details. Finally, the possibility to build a reliable on-demand source of Cooper pairs with this setup is examined using realistic experimental parameters.

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