Evidence for a novel high-field superconductry state in layered organic superconductors


Evidence for a novel high-field superconductry state in layered organic superconductors

Wosnitza, J.

In the so-called FFLO state, named after Fulde, Ferrell, Larkin, and Ovchinnikov, the super-conducting state can survive even at high magnetic fields above the Pauli paramagnetic limit. The quasi-two-dimensional (2D) organic superconductors have been suggested as good can-didates for exhibiting the FFLO state. When applying the magnetic field exactly parallel to the conducting layers the orbital pair breaking is greatly suppressed and the Pauli limit is reached. We performed high-resolution specific-heat and torque-magnetization experiments in magnetic fields up to 32 T for such 2D organic superconductors. In a very narrow angular region close to parallel-field orientation we observe additional anomalies below the upper critical field sig-naling the existence of an additional superconducting phase. The specific-heat data for kappa-(BEDT-TTF)2Cu(NCS)2 with Tc = 9.1 K show that the superconducting transition becomes first order for fields above 21 T indicating that the Pauli limit is reached. Below about 3 K, the upper critical field increases sharply and a second first-order transition appears within the superconducting phase. These results are corroborated by magnetic-torque data which allowed to follow the phase diagram to lower temperatures and higher fields. Our results give strong evidence for the realization of the FFLO state in organic superconductors.
Work done in cooperation with R. Lortz, B. Bergk, Y. Wang, A. Demuer, I. Sheikin, G. Zwicknagl, and Y. Nakazawa.

  • Invited lecture (Conferences)
    International Symposium on "Novel states in correlated condensed matter - from model systems to real materials", 02.-04.03.2010, Berlin, Deutschland

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