arXiv · 1306.6304
Thermally activated conductance in arrays of small Josephson junctions
Abstract
We present measurements of the temperature-dependent conductance for series arrays of small-capacitance SQUIDs. At low bias voltages, the arrays exhibit a strong Coulomb blockade, which we study in detail as a function of temperature and Josephson energy $E_J$. We find that the zero-bias conductance is well described by thermally activated charge transport with the activation energy on the order of $\Lambda E_C$, where $\Lambda$ is the charge screening length in the array and $E_C$ is the charging energy of a single SQUID.
Explore related subjects
Keep this discovery
J. Zimmer, N. Vogt, A. Fiebig, S. V. Syzranov, A. Lukashenko, R. Schäfer, H. Rotzinger, A. Shnirman, M. Marthaler, A. V. Ustinov. 2013-06-26. Thermally activated conductance in arrays of small Josephson junctions. https://doi.org/10.1103/physrevb.88.144506
Cite the original work for its findings. Save a collection to share your selection of sources.