TELECOMMUNICATIONS AND RADIO ENGINEERING - 2012 Vol. 71,
No 2
 

 

 

 

THZ/GHZ WIDEBAND QUASIOPTICAL SPATIAL MULTIPLEXERS AND DEMULTIPLEXERS OF ELECTROMAGNETIC WAVES



V.I. Bezborodov, V.K. Kiseliov, Ye.M. Kuleshov, V.K. Laptiy, P.K. Nesterov, I.V. Scherbatko, & M.S. Yanovskiy
Usikov Institute of Radio Physics and Electronics,
National Academy of Sciences of Ukraine
12, Academician Proskura St., Kharkiv 61085, Ukraine
Address all correspondence to V.Ê. Êiseliov E-mail: kiseliov@ire.kharkov.ua

Abstract
Wideband quasioptical spatial multiplexers and demultiplexers were developed and tested for GHz and THz bands. These elements are based on dielectric splitting plates and metal strip gratings, placed in diagonal planes of orthogonal branches in metal-dielectric waveguides with square cross-section. Optimization of such devices have been done as well.
KEY WORDS: quasioptics, beamsplitter, metal strip grate

References

  1. Weinzettl, V., Panek, R., Hron, M. et al., (2010), Overview of the Compass Diagnostics, 26th Symposium on Fusion Technology (SOFT2010), Porto, Portugal, Sep. 27 – Oct. 1, pp.02-85.
  2. Kazantsev, Y.N. and Kharlashkin, Î.À., (1978), Rectangular waveguides “hollow dielectric channel type, Radiotechnica and electronic,  23(10):2060-2068 (in Russian),
  3. Born, M. and Wolf, E., (1997), Principles of Optics: Electromagnetic Theory of propagation, interference and diffraction of light, Cambridge University Press. – 720 p.
  4. Bezborodov, V.I., Kiselev, V.K., Kuleshov, E.M., and Yanovsky, M.S., (2009), Quasi-Optical Radio Measuring Devices for Shorter-Millimeter and Submillimeter Wavelengths, Based on the Metal-Dielectric Waveguide of Square Cross-Section, Telecommunications and Radio Engineering, 68(5):371-383.
  5. Kuleshov, Ye. and Litvinov, D., (1971), Regarding beam-splitting in quasioptical microwave transmission lines, Radiotechnika, 18:98-104 (in Russian).
  6. Shestopalov, V.P., Litvinenko, L.I., Masalov, S.A., and Sologub, V., (1973), Wave diffraction on gratings, Kharkov State Univ., Kharkov: 288p. (in Russian).
  7. Kirilenko, À., Masalov, S., Rud’, L., and Sirenko, Yu., (1980), Waveguide type polarization gratings analysis and optimization, Applied electrodynamics. 4:29-68 (in Russian).
  8. Feld, Y., (1952), Waveguide handbook, Sov. Radio, Moscow: 431 p. (in Russian).
  9. 3D Full-wave lectromagnetic Field SSImulation. [electronic resources] www.ansoft.com/products/hf/hfss.
  10. Shestopalov, V.P., Kirilenko, A.A., Masalov, S.A., and Sirenko, Yu.K., (1986), Resonance wave scattering. Diffraction Gratings. Naukova Dumka, Kiev: 232 p. (in Russian).


pages 187-195

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