Vectorial spin-orbital Hall effect of light upon tight focusing and its experimental observation in azopolymer films
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Opto-Electronic Advances
Reference39 articles.
1. Liu L, Chen SS, Lin ZZ, Zhang X. A symmetry-breaking phase in two-dimensional FeTe2 with ferromagnetism above room temperature. J Phys Chem Lett 11, 7893–7900 (2020).
Liu L, Chen SS, Lin ZZ, Zhang X. A symmetry-breaking phase in two-dimensional FeTe2 with ferromagnetism above room temperature. J Phys Chem Lett 11, 7893–7900 (2020).
2. Córdova C, Ohmori K, Rudelius T. Generalized symmetry breaking scales and weak gravity conjectures. J High Energy Phys 2022, 154 (2022).
Córdova C, Ohmori K, Rudelius T. Generalized symmetry breaking scales and weak gravity conjectures. J High Energy Phys 2022, 154 (2022).
3. Devínsky F. Chirality and the origin of life. Symmetry 13, 2277 (2021).
Devínsky F. Chirality and the origin of life. Symmetry 13, 2277 (2021).
4. Yang SH, Naaman R, Paltiel Y, Parkin SSP. Chiral spintronics. Nat Rev Phys 3, 328–343 (2021).
Yang SH, Naaman R, Paltiel Y, Parkin SSP. Chiral spintronics. Nat Rev Phys 3, 328–343 (2021).
5. Cheng JH, Zhang Z, Mei W, Cao Y, Ling XH et al. Symmetry-breaking enabled topological phase transitions in spin-orbit optics. Opt Express 31, 23621–23630 (2023).
Cheng JH, Zhang Z, Mei W, Cao Y, Ling XH et al. Symmetry-breaking enabled topological phase transitions in spin-orbit optics. Opt Express 31, 23621–23630 (2023).
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