Magnetic field dependence of low temperature specific heat of spinel oxide superconductor LiTi_2O_4
C. P. Sun, J. -Y. Lin, S. Mollah, P. L. Ho, H. D. Yang, F. C. Hsu, Y., C. Liao, and M. K. Wu

TL;DR
This study investigates the magnetic field dependence of low temperature specific heat in LiTi2O4, revealing its characteristics as a type-II, BCS-like superconductor with moderate electron correlations.
Contribution
It provides detailed thermodynamic parameters and field-dependent behaviors of LiTi2O4, confirming its classification as a typical type-II superconductor with moderate coupling.
Findings
Electronic specific heat coefficient gamma_n = 19.15 mJ/mol K^2
Superconducting transition temperature Tc ~ 11.4 K
Upper critical field Hc2(0) ~ 11.7 T
Abstract
Magnetic field dependence of low temperature specific heat of spinel oxide superconductor LiTi_2O_4 has been elaborately investigated. In the normal state, the obtained electronic coefficient of specific heat gamma_n = 19.15 mJ/mol K2, the Debye temperature is 657 K and some other parameters are compared with those reported earlier. The superconducting transition at Tc ~ 11.4 K is very sharp (DeltaTc ~ 0.3 K) and the estimated delataC/gamma_nTc is ~ 1.78. In the superconducting state, the best fit of data leads to the electronic specific heat C_es/Gamma_nTc = 9.87 exp (-1.58 Tc/T) without field and gamma(H) ~ H^0.95 with fields. In addition, Hc2(0) ~ 11.7 T, Hc(0) ~ 0.32 T, xi_GL(0) ~ 5.5 nm, lambda_GL(0) ~ 160 nm, and Hc1(0) ~ 26 mT are estimated from Werthamer-Helfand-Hohenberg (WHH) theory or other relevant relations. All results from the present study indicate that LiTi2O4 can be…
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