English

Increase of critical current density in FeSe superconductor by strain effect

Superconductivity 2025-11-25 v1 Strongly Correlated Electrons

Abstract

Conventional JcJ_c-enhancement methods like doping and irradiation often introduce extrinsic elements or defects, altering intrinsic properties. Here, we report a significant JcJ_c enhancement in FeSe single crystals through compressive strain applied using a glass-fiber-reinforced plastic substrate with anisotropic thermal contraction during cooling. Under zero field at 2 K, JcJ_{\text{c}} increases by a factor of \sim4 from 2.3×104\sim 2.3 \times 10^{4} to 8.7×104\sim 8.7 \times 10^{4} A cm2^{-2}; at 5 T, it achieves an order-of-magnitude enhancement, rising from 1.0×103\sim 1.0 \times 10^{3} to 1.0×104\sim 1.0 \times 10^{4} A cm2^{-2}. Analysis based on the Dew-Hughes model of the fpf_{\text{p}}(h) relationship shows that strain strengthens vortex pinning, and shifts the pinning mechanism from point-like pinning to combined point and surface pinnings. This work offers an effective method to enhance FeSe's current-carrying limitation, deepens understanding of iron-based superconductors' pinning mechanisms, and highlights strain engineering's potential for optimizing superconducting performance.

Keywords

Cite

@article{arxiv.2511.19058,
  title  = {Increase of critical current density in FeSe superconductor by strain effect},
  author = {Han Luo and Xinyue Wang and Xin Zhou and Longfei Sun and Mengqin Liu and Ran Guo and Sheng Li and Yue Sun and Zhixiang Shi},
  journal= {arXiv preprint arXiv:2511.19058},
  year   = {2025}
}

Comments

8 pages, 4 figures