Published December 1, 1981 | Version v1
Journal article

Possible triplet superconductivity in thin films and layered compounds in a strong, parallel magnetic field

  • 1. Abteilung fuer Theoretische Festkoerperphysik, Universitaet Hamburg, Hamburg, West Germany

Description

We consider a model of both singlet and triplet superconductivity in thin films and intercalated layered compounds in which the attractive electron-electron interaction has both s- and p-wave form in the layers and interlayer pairing is also possible for the layered materials. We include the effects of intralayer s- and p-wave impurity scattering. As expected, we find that the intralayer singlet state is not suppressed by scattering, but the interlayer state is suppressed by s-wave scattering and the intralayer p-wave state is suppressed by transport scattering. For thin films in a parallel magnetic field the p-wave state is dominant below the transition temperature T/sub i/ at fields exceeding the s-wave Pauli limit H/sub p/. For the layered compounds with interlayer tunneling matrix element J, there is temperature T*>0 below which H/sub c/2,parallel for one of the triplet states is divergent, provided that J<2πT10/γ√e or J<2πT/sub i/0f(tau/sub s//tau/sub tr/)/γ, where f(z)> or =1 and T/sub i/0 and T/sub I/0 are the intra- and interlayer triplet transition temperatures in the absence of impurities, respectively. We also examine the behavior of the triplet states in small magnetic fields, and discuss the possibilities of observing the phenomenon in real materials

Additional details

Publishing Information

Journal Title
Phys. Rev., B: Condens. Matter
Journal Volume
24
Journal Issue
11
Series
Phys. Rev., B: Condens. Matter.
Journal Page Range
6361-6382
ISSN
0163-1829