Department of Engineering Science, The University of Electro-Communications, 1-5-1 Chofugaoka, Chofu, Tokyo 182-8585, Japan.
Phys Rev Lett. 2012 Nov 9;109(19):196801. doi: 10.1103/PhysRevLett.109.196801. Epub 2012 Nov 7.
The current-voltage characteristics of two long capacitively coupled one-dimensional arrays of small Josephson junctions were measured, where the coupling capacitance was comparable with the capacitance of the junction. The current in both arrays was simultaneously measured at various applied magnetic fields with the voltage applied to only one of the arrays. The current was induced in the unbiased array beyond the threshold voltage for the Coulomb blockade of the biased array. The direction of the induced current is the same as that of the current in the other array when the applied magnetic field is small and Cooper-pair tunneling is dominant, while it changes to the opposite direction when the applied magnetic field is large and single-electron tunneling is dominant. This suggests that the current induction mechanism between arrays of small Josephson junctions is substantially different from that in arrays of small normal tunnel junctions.
我们测量了两个长电容耦合一维小约瑟夫森结阵列的电流-电压特性,其中耦合电容可与结电容相媲美。在施加到只有一个阵列的电压的情况下,在各种施加磁场下同时测量两个阵列中的电流。在偏置阵列的库仑阻塞的阈值电压以上,在无偏置阵列中感应出电流。当施加磁场较小时,主要是库珀对隧道电流,感应电流的方向与另一个阵列中的电流相同,而当施加磁场较大时,主要是单电子隧道电流,感应电流的方向变为相反。这表明小约瑟夫森结阵列之间的电流感应机制与小正常隧道结阵列中的电流感应机制有很大的不同。