Effect of pressure on the superconducting properties of Au substituted PdTe$_2$ with the CdI$_2$-type structure
Ayako Ohmura, Kazuki Ichikawa, Kyohei Tanaka, Takashi Naka, Motoharu Imai, Fumihiro Ishikawa, Takayuki Nakane, and Anne de Visser

TL;DR
This study investigates how pressure affects the structural and superconducting properties of Au substituted PdTe2, revealing stable structure up to high pressure and composition-dependent superconducting behavior.
Contribution
It provides new insights into the pressure dependence of superconductivity in Au substituted PdTe2 with different compositions.
Findings
CdI2-type structure remains stable up to 8 GPa for all compositions.
Superconductivity evolves from weak to strong coupling with increasing Au content.
Tc shows a maximum at certain pressures for higher Au content, but decreases monotonically for lower Au content.
Abstract
Transition metal ditellurides with the CdI2-type structure are materials with intriguing superconducting and electronic properties as demonstrated by PdTe2. Gold substituted PdTe2, AuxPd1-xTe2, adopts the CdI2-type structure for a Pd content larger than 43 at.% at room temperature, and in this range enhanced superconductivity with a critical temperature (Tc) above 4 K has been reported (Kudo et al., PRB 93, 140505, 2016). Here we present the effect of pressure on the structural and superconducting properties of AuxPd1-xTe2 for x=0.15, 0.25 and 0.35 with Tc =2.7, 4.1, and 4.6 K at 1 atm, respectively. Synchrotron radiation x-ray diffraction shows that the CdI2-type structure remains stable up to 8 GPa for all three compositions and that they have almost the same volume compressibility. Heat capacity measurements show that Au substituted PdTe2 exhibits type-II superconductivity, that…
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