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First-principles calculations of physical properties and superconductivity of orthorhombic ScRuSi and ZrRhSi

H. Y. Uzunok, S. Baǧcı, Ertuǧrul Karaca, H. M. Tütüncü, G. P. Srivastava

DOI 10.1103/PhysRevB.102.134508 · Physical Review B

T1

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Abstract

We have performed ab initio pseudopotential calculations of the structural, electronic, elastic, mechanical, vibrational, electron-phonon interaction, and superconducting properties of ScRuSi and ZrRhSi. An assessment of their elastic and mechanical properties reveals that ScRuSi is a ductile compound, while ZrRhSi is a brittle compound. For both compounds electronic energy bands in the vicinity of the Fermi level originate from the d states of transition-metal atoms. The Eliashberg spectral function reveals that low-frequency phonon modes due to coupled motions of transition-metal atoms are more involved in the process of scattering of electrons than the high-frequency modes due to the vibrations of Si atoms. The average electron-phonon coupling parameter is calculated to be 0.54 for ScRuSi and 0.84 for ZrRhSi from the integration of the Eliashberg spectral function. It is found that the relatively weaker electron-phonon interaction in ScRuSi makes its superconducting transition temperature value (Tc=3.23 K) considerably lower than that of ZrRhSi (Tc=10.45 K).

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
ScRuSi

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3.23Pressure not reportedunknown
ZrRhSi

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10.45Pressure not reportedunknown
ScRuSi

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3.1Pressure not reportedunknown
ScIrP

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3.4Pressure not reportedunknown
ScRhP

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2Pressure not reportedunknown
MgPtSi

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2.5Pressure not reportedunknown

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