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A high extinction ratio polarization beam splitter based on multimode interference coupler has been obtained on silicon-on-insulator.
In this paper, a beam splitter based on the bandgap of photonic crystal is designed and demonstrated experimentally for polarization-dependent beam splitting.
It has been reported that a polarizing beam splitter based on a rectangular-groove grating (a grating polarizing beam splitter) can be easily designed for specific applications using the modal method.
In [12] T. Niu et. al. demonstrated a terahertz beam splitter based on periodic sub-array.
A novel method is presented in this paper to achieve even beam splitter based on a subwavelength binary simple periodic rectangular structure by combining the RCWA and the GA.
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Here, novel even beam splitters based on subwavelength binary simple periodic rectangular structure are presented by combining the rigorous couple-wave analysis (RCWA) with the genetic algorithm (GA).
In [10], B. Ung et. al. fabricated a terahertz beam-splitter based on low-density polyethylene plastic sheeting coated with a conducting silver layer.
Firstly, a novel polarization splitter based on this kind of dual-core hybrid PCF is designed.
We propose a compact polarization splitter based on dual-elliptical-core photonic crystal fiber.
To sum up, we have designed a temperature-controlled power splitter based on photonic crystal operating in the terahertz regime.
A polarization beam splitter (PBS) based on a subwavelength dielectric grating has been designed for use with 193 nm light.
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