Synthesis, characterization, electronic structure, and phonon properties of the noncentrosymmetric superconductor LaPtSi

In the present work we report on the synthesis, crystal structure, and physical properties (resistivity, magnetization, heat capacity) in combination with density functional theory (DFT) calculations of the electronic structure and phonon properties for the intermetallic compound LaPtSi. LaPtSi crys...

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Veröffentlicht in:Physical review. B, Condensed matter and materials physics Condensed matter and materials physics, 2013-09, Vol.88 (10), Article 104508
Hauptverfasser: Kneidinger, F., Michor, H., Sidorenko, A., Bauer, E., Zeiringer, I., Rogl, P., Blaas-Schenner, C., Reith, D., Podloucky, R.
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Sprache:eng
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Zusammenfassung:In the present work we report on the synthesis, crystal structure, and physical properties (resistivity, magnetization, heat capacity) in combination with density functional theory (DFT) calculations of the electronic structure and phonon properties for the intermetallic compound LaPtSi. LaPtSi crystallizes in its own noncentrosymmetric structure type (space group I4 sub(1)md; a = 0.42502(1) nm and c = 1.4525(5) nm), which is an ordered ternary derivative of the centrosymmetric alpha -ThSi sub(2)-structure. The weakly correlated compound LaPtSi (Sommerfeld value gamma = 6.5 mJ/molK super(2)) exhibits superconductivity below T sub(c) = 3.35 K and appears to be a fully gapped, weakly coupled s-wave BCS superconductor. The experimental observations are supported by DFT calculations which show that, despite a substantial spin-orbit splitting of the Fermi surfaces, a spin-singlet pairing is prevalent.
ISSN:1098-0121
1550-235X
DOI:10.1103/PhysRevB.88.104508