Left- and right-handed trigonal Se and Te enantiomers exhibit opposite signs in the σ_yx^{S_y} and σ_yx^{L_y} components of spin and orbital Hall conductivities due to mirror symmetry between their space groups.
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2 Pith papers cite this work. Polarity classification is still indexing.
fields
cond-mat.mtrl-sci 2years
2026 2representative citing papers
DFT calculations find stronger effective valence-band spin splitting in (R/S-NEA)PbI3 than in (R/S-PEA)PbI3 due to larger SOC gaps and band crossings, with opposite spin textures for the two compounds matching their opposite octahedral distortions.
citing papers explorer
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Probing the Chirality of Trigonal Selenium and Tellurium by Spin and Orbital Hall Effects
Left- and right-handed trigonal Se and Te enantiomers exhibit opposite signs in the σ_yx^{S_y} and σ_yx^{L_y} components of spin and orbital Hall conductivities due to mirror symmetry between their space groups.
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First-principles calculations of spin-split bands in chiral hybrid organic-inorganic perovskites ($R$/$S$-PEA)PbI$_3$ and ($R$/$S$-NEA)PbI$_3$
DFT calculations find stronger effective valence-band spin splitting in (R/S-NEA)PbI3 than in (R/S-PEA)PbI3 due to larger SOC gaps and band crossings, with opposite spin textures for the two compounds matching their opposite octahedral distortions.