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Synthesis and Physical Properties of FeSe1/2Te1/2 Superconductor

Authors :
Shan Yu
Arpita Vajpayee
Anand Pal
V. P. S. Awana
Yanfeng Guo
Monika Mudgel
Eiji Takayama-Muromachi
Mushahid Husain
Yi Shi
Hari Kishan
Kazunari Yamaura
Rong Zeng
Publication Year :
2009
Publisher :
arXiv, 2009.

Abstract

One of the most important properties of very recently reported FeSe based superconductors is the robustness of their superconductivity under applied magnetic field. The synthesis and control of superconductivity in FeSe based compounds is rather a difficult task. Synthesis and physical property characterization for optimized superconductivity of FeSe1/2Te1/2 at 13 K is reported here. The compound crystallized in a tetragonal structure with lattice parameters a = 3.8008(10) and c = 6.0187 (15) A. Magnetization measurements indicated bulk superconductivity with lower critical field (Hc1) of around 180 Oe. By applying Ginzburg Landau (GL) theory, the Hc2(0) value is estimated to be = 1840 kOe for the 90% of resistive transition. A heat capacity measurement revealed bulk superconductivity by a hump at Tc near 13 K, and an expected decrease was observed under an applied magnetic field.<br />Comment: 13 pages text + Figs: commenta (awana@mail.nplindia.ernet.in)

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....65d7a4af1bcc08f0e8c9f06004e8275d
Full Text :
https://doi.org/10.48550/arxiv.0912.0997