Electrically tunable spin-orbit coupled photonic lattice in a liquid crystal microcavity

Muszyński, Marcin;Oliwa, Przemysław;Kokhanchik, Pavel;Kapuściński, Piotr;Oton, Eva;Mazur, Rafał;Morawiak, Przemysław;Piecek, Wiktor;Kula, Przemysław;Bardyszewski, Witold;Piętka, Barbara;Bobylev, Daniil;Solnyshkov, Dmitry;Malpuech, Guillaume;Szczytko, Jacek

Description

We create a one-dimensional photonic crystal with strong polarization dependence and tunable by an applied electric field.We accomplish this in a planar microcavity by embedding a cholesteric liquid crystal (LC), which spontaneously forms a uniform lying helix (ULH). The applied voltage controls the orientation of the LC molecules and, consequently, the strength of a polarization-dependent periodic potential. It leads to opening or closing of photonic band gaps in the dispersion of the massive photons in the microcavity. In addition, when the ULH structure possesses a molecular tilt, it induces a spin-orbit coupling between the lattice bands of different parity. This interband spin-orbit coupling (ISOC) is analogous to optical activity and can be treated as a synthetic non-Abelian gauge potential.Finally, we show that doping the LC with dyes allows us to achieve lasing that inherits all the above-mentioned tunable properties of LC microcavity, including dual and circularly-polarized lasing.

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0.5

FAIR Score

88%

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Publication Details

DOI

Publisher

Dane Badawcze UW

Assigned Domain

Subfield

Atomic and Molecular Physics, and Optics

Field

Physics and Astronomy

Domain

Physical Sciences

Confidence Score

51%

Source

Scholar Data Model

Normalization Factors

FT

63.46

CTw

1.00

MTw

1.00