English

Effects of heavy-ion irradiation on FeSe

Superconductivity 2017-03-23 v1 Strongly Correlated Electrons

Abstract

We report the effects of heavy-ion irradiation on FeSe single crystals by irradiating Uranium up to a dose equivalent matching field of BϕB_\phi = 16 T. Almost continuous columnar defects along the cc-axis with a diameter \sim10 nm are confirmed by high-resolution transmission electron microscopy. TcT_c is found to be suppressed by introducing columnar defects at a rate of dTcT_c/dBϕB_\phi \sim -0.29KT1^{-1}, which is much larger than those observed in iron pnictides. This unexpected large suppression of TcT_c in FeSe is discussed in relation to the large diameter of the columnar defects as well as its unique band structure with a remarkably small Fermi energy. The critical current density is first dramatically enhanced with irradiation reaching a value over \sim2×\times105^5 A/cm2^2 (\sim5 times larger than that of the pristine sample) at 2 K (self-field) with BϕB_\phi = 2 T, then gradually suppressed with increasing BϕB_\phi. The δ\deltall-pinning associated with charge-carrier mean free path fluctuations, and the δ\deltaTcT_c-pinning associated with spatial fluctuations of the transition temperature are found to coexist in the pristine FeSe, while the irradiation increases the contribution from δ\deltall-pinning, and makes it dominant over BϕB_\phi = 4 T.

Keywords

Cite

@article{arxiv.1703.07524,
  title  = {Effects of heavy-ion irradiation on FeSe},
  author = {Yue Sun and Akiyoshi Park and Sunseng Pyon and Tsuyoshi Tamegai and Tadashi Kambara and Ataru Ichinose},
  journal= {arXiv preprint arXiv:1703.07524},
  year   = {2017}
}

Comments

8 pages, 6 figures