English

Manipulating vortex motion by thermal and Lorentz force in high temperature superconductors

Superconductivity 2009-11-11 v3

Abstract

By using thermal and Lorentz force, the vortex motion is successfully manipulated in the mixed state of underdoped La2x_{2 - x}Srx_{x}CuO4_{4} single crystals and optimally doped YBa2_{2}Cu3_{3}O7δ_{7 - \delta} thin films. A conclusion is drawn that the strong Nernst signal above TcT_{c} is induced by vortex motion. In the normal state, in order to reduce the dissipative contribution from the quasiparticle scattering and enhance the signal due to the possible vortex motion, a new measurement configuration is proposed. It is found that the in-plane Nernst signal (HH | | cc) can be measurable up to a high temperature in the pseudogap region, while the Abrikosov flux flow dissipation can only be measured up to TcT_{c}. This may point to different vortices below and above TcT_{c} if we attribute the strong Nernst signal in the pseudogap region to the vortex motion. Below TcT_{c} the dissipation is induced by the motion of the Abrikosov vortices. Above TcT_{c} the dissipation may be caused by the motion of the spontaneously generated unbinded vortex-antivortex pairs.

Keywords

Cite

@article{arxiv.cond-mat/0507015,
  title  = {Manipulating vortex motion by thermal and Lorentz force in high temperature superconductors},
  author = {Z. Wang and L. Shan and Y. Z. Zhang and J. Yan and F. Zhou and J. W. Xiong and W. X. Ti and H. H. Wen},
  journal= {arXiv preprint arXiv:cond-mat/0507015},
  year   = {2009}
}

Comments

6 pages, 8 figures; to be published in Physical Review B

R2 v1 2026-07-22T11:19:18.776Z