AbstractWe investigate the effect of a rough surface on the normal-superconducting phase transition in d-wave superconducting films on the basis of the quasiclassical theory of superconductivity with a boundary condition that allows us to treat the surface scattering from the specular limit to the diffusive limit. When the surfaces are specular, the film can exhibit a novel superconductivity that breaks continuous translational symmetry along the surface as well as time reversal symmetry. When the surfaces are rough, this superconducting phase is suppressed by diffusive surface scattering
At surfaces and interfaces of <I>d</I>-wave superconductors, quasiparticle bound states with zero en...
[[abstract]]Effects of dynamic external pair breaking in superconducting films are studied using mic...
Broken time reversal symmetry (BTRS) in d-wave superconductors is studied and is shown to yield curr...
AbstractWe investigate the effect of a rough surface on the normal-superconducting phase transition ...
AbstractWe report a theoretical study of the critical thickness for a broken time-reversal state tha...
Theoretical model of a rough interface in a superconductor with d-wave symmetry of the order paramet...
Abstract-Theoretical model of a rough interface in a super-conductor with d-wave symmetry of the ord...
Zare A, Dahm T, Schopohl N. Strong Surface Contribution to the Nonlinear Meissner Effect in d-Wave S...
It is known that, in cuprate superconductors, a subdominant order parameter can coexist with the dom...
Surfaces of d-wave superconductors may host a substantial density of zero-energy Andreev states. The...
We present the results of theoretical study of surface state properties in a two-dimensional model f...
We report results of a microscopic calculation of a second-order phase transition into a state-break...
We analyze a mean-field model of electrons on a square lattice with two types of interaction: forwar...
Abstract—A characteristic feature of the BCS theory of superconductivity is the quantum-mechanical c...
High-temperature superconducting materials are often experimentally realized as thin films that can ...
At surfaces and interfaces of <I>d</I>-wave superconductors, quasiparticle bound states with zero en...
[[abstract]]Effects of dynamic external pair breaking in superconducting films are studied using mic...
Broken time reversal symmetry (BTRS) in d-wave superconductors is studied and is shown to yield curr...
AbstractWe investigate the effect of a rough surface on the normal-superconducting phase transition ...
AbstractWe report a theoretical study of the critical thickness for a broken time-reversal state tha...
Theoretical model of a rough interface in a superconductor with d-wave symmetry of the order paramet...
Abstract-Theoretical model of a rough interface in a super-conductor with d-wave symmetry of the ord...
Zare A, Dahm T, Schopohl N. Strong Surface Contribution to the Nonlinear Meissner Effect in d-Wave S...
It is known that, in cuprate superconductors, a subdominant order parameter can coexist with the dom...
Surfaces of d-wave superconductors may host a substantial density of zero-energy Andreev states. The...
We present the results of theoretical study of surface state properties in a two-dimensional model f...
We report results of a microscopic calculation of a second-order phase transition into a state-break...
We analyze a mean-field model of electrons on a square lattice with two types of interaction: forwar...
Abstract—A characteristic feature of the BCS theory of superconductivity is the quantum-mechanical c...
High-temperature superconducting materials are often experimentally realized as thin films that can ...
At surfaces and interfaces of <I>d</I>-wave superconductors, quasiparticle bound states with zero en...
[[abstract]]Effects of dynamic external pair breaking in superconducting films are studied using mic...
Broken time reversal symmetry (BTRS) in d-wave superconductors is studied and is shown to yield curr...