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Suppression of Cooper-pair tunneling in superconducting charge boxes in tunable electromagnetic environments

机译:可调电磁环境中超导电荷盒中库珀对隧穿的抑制

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摘要

The Cooper-pair tunneling in superconducting charge boxes in tunable electromagnetic environments is experimentally studied using a single-electron-transistor electrometer and via current-voltage characteristics measurement with small excitations. In the low-impedance regime, the environmental effect is quantified with an effective Josephson coupling energy, which is found to decrease as the environment impedance increases. In the high-impedance regime, the Cooper-pair tunneling is blockaded. For impedance above 250 MΩ, Coulomb oscillation of the zero-bias conductance suggests that Cooper-pair tunneling is completely suppressed and subgap quasiparticle tunneling becomes dominant.
机译:使用单电子晶体管静电计并通过小激励下的电流-电压特性测量,对可调电磁环境中超导电荷盒中的库珀对隧穿进行了实验研究。在低阻抗状态下,通过有效的约瑟夫森耦合能量来量化环境影响,发现该能量随环境阻抗的增加而减小。在高阻态下,库珀对隧道被阻塞。对于高于250MΩ的阻抗,零偏置电导的库仑振荡表明,库珀对隧穿被完全抑制,亚间隙准粒子隧穿成为主导。

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