paper

On the Selfconsistent Theory of Josephson Effect in Ballistic Superconducting Microconstrictions

arXiv:cond-mat/9904378 · doi:10.1063/1.593831

Abstract

The microscopic theory of current carrying states in the ballistic superconducting microchannel is presented. The effects of the contact length L on the Josephson current are investigated. For the temperatures T close to the critical temperature T_c the problem is treated selfconsistently, with taking into account the distribution of the order parameter inside the contact. The closed integral equation for in strongly inhomogeneous microcontact geometry ( is the coherence length at T=0) replaces the differential Ginzburg-Landau equation. The critical current is expressed in terms of solution of this integral equation. The limiting cases of and are considered. With increasing length L the critical current decreases, although the ballistic Sharvin resistance of the contact remains the same as at L=0. For ultra short channels with ( is the Debye frequency) the corrections to the value of critical current I_c(L=0) are sensitive to the strong coupling effects.

15 pages LaTex, 3 jpg figures

References in corpus (2)