每年出版 12 期
ISSN 打印: 0040-2508
ISSN 在线: 1943-6009
Indexed in
INVESTIGATIONS OF A QUASI-OPTICAL POLARIZATION FREQUENCY CHANGER WITH A ROTATING LINEAR POLARIZER
摘要
The design and principle of operation of the quasi-optical polarization frequency changer with a rotating linear polarizer are described. The level of unwanted oscillations of the input signal frequency and "mirror" frequency at the output was less than −50 dB relative to the wanted signal level when tuning the quarter-wave differential phase sections to an operating frequency.
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Besborodov, V.I., Kiselev, V.K., Kuleshov, E.M., and Yanovskiy, M.S., Quasi-optical polarization terahertz phase changer with phase sections of crystalline quartz.
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Bezborodov, V.I., Kiselev, V.K., Nesterov, P.K., and Yanovckiy, M.S., Investigation of polarization terahertz phase changer with phase sections of crystalline quartz.
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Fox, A.G., An adjustable waveguide phase changer.
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Polupanov, V.N., Kuleshov, E.M., Knyazkov, B.N., and Yanovskiy, M.S., Polarization- spectral characteristics of a rotating linear polarizer.
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Polupanov, V.N. and Kuleshov, E.M., Rotating phase changer.
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Akhiezer, A.I., Goroshko, A.I., Knyazkov, B.N. et al., Dielectric submillimetric beamguide.
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Yanovckiy, M.S. and Knyazkov, B.N., On possibility of decreasing spectral distortions and widening the range of continuous waveguide phase changers.
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Silaev, M.A., Ponderomotive action of the elliptically polarized electromagnetic wave on the flat "phase changing element" in the circular waveguide.
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Polupanov, V.N., Knyazkov, B.N., and Yanovskiy, M.S., On physical operating principles of polarization phase changer.