Superconductivity of Electron-Doped NdOBiS2 by Substitution of Mixed-Valence Ce ions
Naoki Kase, Masaya Matsumoto, Katsuo Kondo, Jun Gouchi, Yoshiya, Uwatoko, Toshiro Sakakibara, and Nobuaki Miyakawa

TL;DR
This study demonstrates superconductivity in Nd1-xCexOBiS2 achieved through electron doping with mixed-valence Ce ions, revealing critical magnetic and electrical properties and comparing them with F-doped counterparts.
Contribution
It reports the successful synthesis and characterization of electron-doped Nd1-xCexOBiS2 single crystals, highlighting the effects of Ce substitution on superconducting properties.
Findings
Maximum Tc of 4.7 K in Nd0.8Ce0.2OBiS2
Upper critical field mu0Hc2(0) about 12 T (ab-plane)
Anisotropic parameter around 35-45
Abstract
Superconductivity is achieved in Nd1-xCexOBiS2 via electron doping using mixed-valence Ce ions. Single crystals with x = 0.2, 0.3, 0.4, and 0.5 are generated using a CsCl flux method. Plate-like single crystals with dimensions of 0.8 0.8 0.2 mm3 were obtained. The magnetic susceptibility chi(T) indicates large diamagnetism, and the electrical resistivity rho(T) indicates zero resistivity. The maximum value of Tc is observed at 4.7 K in Nd0.8Ce0.2OBiS2 from chi(T). From the rho(T) measurements taken in several magnetic fields, the upper critical field mu0Hc2(0) is estimated to be about 12 and 0.34 T for the ab- and c-planes, respectively. We redetermined mu0Hc2(0) of NdO0.7F0.3BiS2, as about 35 and 0.78 T for the ab- and c-planes, respectively. The anisotropic parameter is estimated to be about 35 for Nd0.7Ce0.3OBiS2 and 45 for NdO0.7F0.3BiS2. The mu0Hc2(0) of Nd0.7Ce0.3OBiS2 is…
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