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Engineering spin-orbit synthetic Hamiltonians in liquid-crystal optical cavities

Autor
Mazur, Rafał
Bardyszewski, Witold
Lagoudakis, Pavlos
Piecek, Wiktor
Szczytko, Jacek
Rechcińska, Katarzyna Michalina
Morawiak, Przemysław
Matuszewski, Michał
Kula, Przemysław
Piętka, Barbara
Data publikacji
2019
Abstrakt (EN)

Spin-orbit interactions lead to distinctive functionalities in photonic systems. They exploit the analogy between the quantum mechanical description of a complex electronic spin-orbit system and synthetic Hamiltonians derived for the propagation of electromagnetic waves in dedicated spatial structures. We realize an artificial Rashba-Dresselhaus spin-orbit interaction in a liquid crystal–filled optical cavity. Three-dimensional tomography in energy-momentum space enabled us to directly evidence the spin-split photon mode in the presence of an artificial spin-orbit coupling. The effect is observed when two orthogonal linear polarized modes of opposite parity are brought near resonance. Engineering of spin-orbit synthetic Hamiltonians in optical cavities opens the door to photonic emulators of quantum Hamiltonians with internal degrees of freedom.

Dyscyplina PBN
nauki fizyczne
Czasopismo
Science
Tom
366
Zeszyt
6466
Strony od-do
727-730
ISSN
0036-8075
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