Robust weak antilocalization due to spin-orbital entanglement in Dirac material Sr3SnO
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Molecular Beam Epitaxy of Candidate Topological Superconductor Sr3SnO, UCSB NSF Quantum Foundry, CNSI
PDF] Unusual valence state in the antiperovskites Sr3SnO and Sr3PbO revealed by x-ray photoelectron spectroscopy
Observation of Coexisting Weak Localization and Superconducting Fluctuations in Strained Sn1–xInxTe Thin Films
Materials, Free Full-Text
PDF) Robust weak antilocalization due to spin-orbital entanglement in Dirac material Sr$_3$SnO
Materials, Free Full-Text
Highlights Max Planck Institute for Solid State Research
Robust weak antilocalization due to spin-orbital entanglement in Dirac material Sr3SnO
PDF] Unusual valence state in the antiperovskites Sr3SnO and Sr3PbO revealed by x-ray photoelectron spectroscopy
PDF] Evolution of band topology by competing band overlap and spin-orbit coupling: Twin Dirac cones in Ba 3 SnO as a prototype
Time evolution of the entanglement in the presence of dissipation. a
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