ASOC has a very large energy scale 10 - meV and can easily lift the degeneracy of the conduction energy bands with spin-split Fermi surfaces. The lack of inversion symmetry leads to novel spin fluctuations which tend to mix spin-singlet and spin-triplet parts.
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- Dirac surface states and nature of superconductivity in Noncentrosymmetric BiPd;
- Superconductors with Staggered Non-centrosymmetricity | Journal of the Physical Society of Japan.
Muon spin rotation study of novel skutterudite superconductors. Filled skutterudite compounds are know to exhibit a broad variety of ground state properties. Depending on filling ion ferro-, antiferromagnetic, quadrupolar, and superconducting ordering were observed. Heavy electron mass was evidenced in a number of their representatives.
Non-Centrosymmetric Superconductors: Introduction and Overview - Google Libri
In PrPt4Ge12 despite of cubic symmetry of crystal lattice we found unconventional superconducting order parameter with point nodes, resembling that found in the isostructural heavy fermion compound PrOs4Sb Bauer, Ernst. Berlin, Heidelberg : Springer Berlin Heidelberg, Sigrist, Manfred.
Strongly Correlated Systems, Superconductivity. Surface and Interface Science, Thin Films.
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Solid State Physics. The superconducting condensate is then a superposition of spin-singlet and spin-triplet Cooper pairs. Caviglia, L. Fitting Kourkoutis, G.
Hammerl, C. Richter, C. Schneider, T. Kopp, A. Jaccard, M.
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Andrey V. Chubukov, and J.
Dirac surface states and nature of superconductivity in Noncentrosymmetric BiPd
Quantum-critical theory of the spin-fermion model and its application to cuprates: Normal state analysis - Nonstandard symmetry classes in mesoscopic normal-superconducting hybrid structures - Altland, Alexander et al. Simplified topological invariants for interacting insulators - Zhong Wang and Shou-Cheng Zhang.
Topological hamiltonian as an exact tool for topological invariants - Zhong Wang and Binghai Yan.
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Interactions between electrons and lattice vibrations in a superconductor - Pole expansion of self-energy and interaction effect for topological insulators - Pavlenko, T. Kopp, E. Tsymbal, G. Sawatzky, and J.
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