activity
19982002
most citedDirac quasiparticles and spin-lattice relaxation in the mixed state

4 citations · 4 across the 1 of their papers we have counts for

collaborators

6 papers

cond-mat.supr-con20024 cited

Dirac quasiparticles and spin-lattice relaxation in the mixed state

Daniel Knapp, Catherine Kallin, A. John Berlinsky +1

We present the results of quantum-mechanical calculations, using the singular gauge transformation of Franz and Tesanovic, of the rate of planar Cu spin-lattice relaxation due to e…

cond-mat.supr-con2000

Dirac quasiparticles in the mixed state

Daniel Knapp, Catherine Kallin, A. J. Berlinsky

Energies and wave functions are calculated for d-wave quasiparticles in the mixed state using the formalism of Franz and Tesanovic for the low-lying energy levels. The accuracy of…

math.AP2000

Periodic vortex lattices for the Lawrence-Doniach model of layered superconductors in a parallel field

S. Alama, A. J. Berlinsky, L. Bronsard

We consider the Lawrence-Doniach model for layered superconductors, in which stacks of parallel superconducting planes are coupled via the Josephson effect. We assume that the supe…

math.AP2000

Minimizers of the Lawrence-Doniach energy in the small-coupling limit: finite width samples in a parallel field

S. Alama, A. J. Berlinsky, L. Bronsard

In this paper we study the Lawrence-Doniach model for layered superconductors, for a sample with finite width subjected to a magnetic field parallel to the superconducting layers.…

cond-mat.supr-con1998

Stripe Formation within SO(5) Theory

M. Veillette, Ya. B. Bazaliy, A. J. Berlinsky +1

We study the formation of stripe order within the SO(5) theory of high T_c superconductivity. We show that spin and charge modulations arise as a result of the competition between…

cond-mat.supr-con1998

Properties of SAS Josephson junctions in SO(5) theory

B. C. den Hertog, A. J. Berlinsky, C. Kallin

We derive the qualitative behavior of superconductor-antiferromagnet- superconductor (SAS) Josephson junctions described by Zhang's SO(5) theory. The main differences between these…