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Electrically controlled dual-mode polarization beam splitter using a nematic liquid crystal

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Abstract

Polarization handling using an external source is highly desirable in applied optics and photonics to increase the degree of freedom of an optical system. Here we report an electrically controlled polarization beam splitter (PBS) by sandwiching the nematic liquid crystal (LC) between two equilateral prisms. The presented LC-PBS is operated in two different modes: non-splitting mode and polarization splitting mode. The externally applied voltage can switch the mode of the PBS, which makes the device active and flexible. The proposed electrically controlled PBS exhibits features such as bistability with highly stable modes, large splitting angle, wider operating range, and ease of fabrication with lower cost.

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Supplementary Material (2)

NameDescription
Visualization 1       The video describe the working of a liquid crystal based polarization beam splitter. The applied voltage split the polarization, and we get the transmitted spot of P polarized light. The S polarization remain reflected.
Visualization 2       This video describe the splitting of laser beam spot in a single frame. The the applied voltage splits the polarization and hence switched the direction of the laser beam spot.

Data availability

Data underlying the results presented in this paper are not publicly available at this time but may be obtained from the authors upon reasonable request.

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Figures (8)

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Equations (6)

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