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In-situ tunneling control in photonic potentials by Rashba-Dresselhaus spin-orbit coupling

Authors :
Mirek, Rafał
Kokhanchik, Pavel
Urbonas, Darius
Georgakilas, Ioannis
Muszyński, Marcin
Kapuściński, Piotr
Oliwa, Przemysław
Piętka, Barbara
Szczytko, Jacek
Forster, Michael
Scherf, Ullrich
Morawiak, Przemysław
Piecek, Wiktor
Kula, Przemysław
Solnyshkov, Dmitry
Malpuech, Guillaume
Mahrt, Rainer
Stöferle, Thilo
Publication Year :
2024

Abstract

The tunability of individual coupling amplitudes in photonic lattices is highly desirable for photonic Hamiltonian engineering and for studying topological transitions in situ. In this work, we demonstrate the tunneling control between individual lattice sites patterned inside an optical microcavity. The tuning is achieved by applying a voltage to a liquid crystal microcavity possessing photonic Rashba-Dresselhaus spin-orbit coupling. This type of spin-orbit coupling emerges due to the high birefringence of the liquid crystal material and constitutes an artificial gauge field for photons. The proposed technique can be combined with strong-light matter coupling and non-Hermitian physics already established in liquid crystal microcavities.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2408.08582
Document Type :
Working Paper