arXiv · cond-mat/0008348
Transverse and in-plane modification of superconductivity and electronic structure in the quasi-two dimensional organic conductor $κ$--(BEDT-TTF)$_{2}$Cu(SCN)$_{2}$ by uniaxial stress
Abstract
We have employed uniaxial stress along the principal axes of the quasi-two dimensional organic superconductor $κ$--(BEDT-TTF)$_{2}$Cu(SCN)$_{2}$. The lattice anisotropy is thereby altered, with corresponding changes in the intermolecular transfer energies. The effect of uniaxial stress on the superconducting transition temperature $T_{c}$ and critical field $B_{c2}$ is found to be anisotropic.There is an indication of an increase in $T_{c}$ and $B_{c2}$ for in-plane stress, but both parameters decrease rapidly for transverse (inter-plane) stress. Magnetotransport studies reveal stress-induced changes in the Fermi surface through the observation of the Shubnikov de Haas oscillations. The stress dependence of a resistive anomaly in the magnetoresistance, which is associated with the critical field $B_{c2}$, is also investigated. We discuss the experimental findings in the context of recent phenomenological and theoretical treatments of quasi-two dimensional systems where the anisotropic triangular lattice Hubbard model has been used to treat two-dimensional superconductors.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
E. S. Choi, J. S. Brooks, S. Y. Han, L. Balicas, J. S. Qualls. 2000-08-23. Transverse and in-plane modification of superconductivity and electronic structure in the quasi-two dimensional organic conductor $κ$--(BEDT-TTF)$_{2}$Cu(SCN)$_{2}$ by uniaxial stress. https://doi.org/10.1080/13642810110033827
Cite the original work for its findings. Save a collection to share your selection of sources.