会议论文详细信息
27th International Conference on Low Temperature Physics
Weak localization and conductance fluctuations-like effects in Qubits driven by biharmonic signals
Ferrón, Alejandro^1,2 ; Domínguez, Daniel^3 ; Sánchez, María José^3
Instituto de Modelado e Innovación Tecnologica (CONICET-UNNE), Corrientes
3400, Argentina^1
International Iberian Nanotechnology Laboratory (INL), Av. Mestre Jos Veiga, Braga
4715-330, Portugal^2
Centro Atómico Bariloche, Instituto Balseiro, San Carlos de Bariloche
8400, Argentina^3
关键词: Broken time-reversal symmetry;    Conductance fluctuation;    Control parameters;    Effective transmittance;    Interference effects;    Mesoscopic systems;    Weak localization;    Weak localization effects;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/568/5/052028/pdf
DOI  :  10.1088/1742-6596/568/5/052028
来源: IOP
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【 摘 要 】

We investigate the effect of broken time reversal symmetry in flux qubits driven by a biharmonic magnetic flux signal with a phase lag. In the regime of large relaxation times, we explicitly compute the transition rate between the ground and the excited state, accounting for decoherence as a classical noise. Through a direct analogy between interference effects at the avoided level crossing and scattering events in weakly disordered electronic mesoscopic systems, the transition rate plays the role of an effective transmittance while the phase lag acts as a time reversal control parameter. Clear signatures of both weak localization and conductance fluctuations-like effects are predicted. Their behavior is studied as a function of the coherence rate, and a comparison with recent experimental results is performed. Our study shows that it is decoherence, and not the driving protocol, what limits the experimental detection of weak localization effects.

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