Pressure effects on the Tc of superconducting MgCxNi3
H. D. Yang, S. Mollah, W. L. Huang, P. L. Ho, H. L. Huang, C. -J. Liu,, J. -Y. Lin, Y. -L. Zhang, R. -C. Yu, and C. -Q. Jin

TL;DR
This study investigates how hydrostatic pressure affects the superconducting transition temperature (Tc) of MgCxNi3, revealing a positive correlation and comparing its pressure sensitivity to other superconductors, with implications for understanding its electronic structure.
Contribution
It provides the first detailed analysis of pressure effects on MgCxNi3's Tc, highlighting the role of density of states in its superconductivity behavior.
Findings
Tc increases with pressure at ~0.0134 to 0.0155 K/kbar.
Pressure sensitivity of MgCxNi3 is similar to other intermetallic superconductors.
The pressure dependence is explained by changes in the density of states.
Abstract
The effect of hydrostatic pressure (P) up to 17 kbar on the superconducting transition temperature (Tc) of the newly discovered intermetallic non-oxide perovskite superconductor MgCxNi3 has been reported. The TC is found to increase with increasing P at a rate of dTc/dP ~ 0.0134 to 0.0155 K/kbar depending on the value of carbon content x. The absolute value of dTc/dP for MgCxNi3 is about the same as that of intermetallic RNi2B2C (R = rare earths) and metallic superconductors but about one order of magnitude smaller than that of the most recently and intensively studied superconductor MgB2. However, the dlnTc/dP ~ 0.00181 to 0.00224 kbar-1 and the rate of change of Tc with unit cell volume (V), dlnTC/dlnV ~ -3.18 to -2.58 of MgCxNi3 are having the comparable magnitude to that of MgB2 with opposite sign. The increase of Tc with P in MgCxNi3 can be explained in the frame work of density of…
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