Baran B, Taranko R, Domański T
Institute of Physics, M. Curie-Skłodowska University, 20-031, Lublin, Poland.
Sci Rep. 2021 May 27;11(1):11138. doi: 10.1038/s41598-021-90080-2.
Dynamical processes induced by the external time-dependent fields can provide valuable insight into the characteristic energy scales of a given physical system. We investigate them here in a nanoscopic heterostructure, consisting of the double quantum dot coupled in series to the superconducting and the metallic reservoirs, analyzing its response to (i) abrupt bias voltage applied across the junction, (ii) sudden change of the energy levels, and imposed by (iii) their periodic driving. We explore subgap properties of this setup which are strictly related to the in-gap quasiparticles and discuss their signatures manifested in the time-dependent charge currents. The characteristic multi-mode oscillations, their beating patters and photon-assisted harmonics reveal a rich spectrum of dynamical features that might be important for designing the superconducting qubits.
由随时间变化的外部场诱导的动力学过程,可以为给定物理系统的特征能量尺度提供有价值的见解。我们在此研究一个纳米异质结构中的此类过程,该结构由与超导库和金属库串联耦合的双量子点组成,分析其对以下情况的响应:(i) 跨结施加的突然偏置电压,(ii) 能级的突然变化,以及 (iii) 由它们的周期性驱动所施加的情况。我们探索这种设置的亚能隙特性,这些特性与能隙内的准粒子密切相关,并讨论它们在随时间变化的电荷电流中表现出的特征。特征多模振荡、它们的拍频模式和光子辅助谐波揭示了丰富的动力学特征谱,这对于设计超导量子比特可能很重要。