English

Synthesis, anisotropy, and superconducting properties of LiFeAs single crystal

Superconductivity 2010-06-01 v1 Materials Science

Abstract

A LiFeAs single crystal with TconsetT_c^{onset}\sim19.7 K was grown successfully in a sealed tungsten crucible using the Bridgeman method. The electrical resistivity experiments revealed a ratio of room temperature to residual resistivity (RRR) of approximately 46 and 18 for the in-plane and out-of plane directions. The estimated anisotropic resistivity, γρ\gamma_\rho=ρc\rho_c / ρab\rho_{ab}, was approximately 3.3 at TconsetT_c^{onset}. The upper critical fields had large Hc2abH_{c2} ^{\shortparallel ab} and Hc2cH_{c2}^{\shortparallel c} values of 83.4 T and 72.5 T, respectively, and an anisotropy ratio is γH\gamma_H=Hc2abH_{c2}^{\shortparallel ab} / Hc2cH_{c2} ^{\shortparallel c}\sim1.15. The high upper critical field value and small anisotropy highlight the potential use of LiFeAs in a variety of applications. The calculated critical current density (Jc)(J_c) from the MM-HH loop is approximately 103^3 A/cm2^2

Keywords

Cite

@article{arxiv.1002.2249,
  title  = {Synthesis, anisotropy, and superconducting properties of LiFeAs single crystal},
  author = {Yoo Jang Song and Jin Soo Ghim and Byeong Hun Min and Yong Seung Kwon and Myung Hwa Jung and Jong-Soo Rhyee},
  journal= {arXiv preprint arXiv:1002.2249},
  year   = {2010}
}

Comments

4 pages, 4 figures