350 rub
Journal Radioengineering №8 for 2018 г.
Article in number:
Research of absorption of metal-dielectric structure NiCr-muskovit in the range of 170…260 GHZ
Type of article: scientific article
DOI: 10.18127/j00338486-201808-29
UDC: 621.38
Authors:

M.A. Medvedev – Engineer, NIKA-Microwave, Ltd (Saratov)

E-mail: medmixal@yahoo.com

I.G. Svechnikov – Ph.D.(Phys.-Math.), Research Scientist, NIKA-Microwave, Ltd (Saratov)

E-mail: svechnikovig@yandex.ru

E.A. Torgashov – Leading Engineer, NIKA-Microwave, Ltd (Saratov)

E-mail: eatorgashov@mail.ru

A.S. Oleynik – Dr.Sc.(Eng.), Professor, Department «Electronic Instruments and Devices», Yuri Gagarin State Technical University of Saratov

E-mail: anatoly.semenovich@gmail.com

N.A. Koplevatskii – Leading Engineer, NIKA-Microwave, Ltd (Saratov) E-mail: naumkopl@gmail.com

Abstract:

Measured data of reflection and transmission of metal-dielectric structure nichrome (NiCr)- mica (muscovite) in a frequency range of 170−260 GHz are given. Thickness of NiCr layer is 17−21 nm. Thickness of muscovite layer is 40 μm. Transmission, reflection and absorption constants of NiCr-muscovite structure are provided in a frequency range of 170−260 GHz. Potential function of structure NiCr-muscovite in the systems of microwave range is described.

Pages: 155-158
References
  1. Detlefsen E., Dallinger A., Schelkshorn S. Approaches to millimeter-wave imaging of humans // Proc. 1st European Radar Conference. Amsterdam. 2004. P. 279−282.
  2. Chen H.-M., et. al. Imaging for concealed weapon detection: a tutorial overview of development in imaging sensors and processing/ Chen H.-M. // IEEE Signal Processing Magazine. 2005. V. 22. P. 52−61.
  3. Sayed M.M. Millimeter Wave Tests and Instrumentation // 65th ARFTG Conference Digest. Long Beach. CA. 2005. P. 28−37.
  4. Kovalev A.A., Kovalev A.V. Texnicheskie sredstva antiterroristicheskoj i kriminalisticheskoj diagnostiki / Pod red. V.V. Klyueva. Izd. 1-e. M.: Spektr. 2011. 206 s.
  5. Pat. RF 2650430, MPK G01J 5/20. Priemnik IK- i TGcz-izluchenij / Olejnik A.S., Medvedev M.A., Turkin Ya.V.; zayavitel’ i patentoobladatel’ SGTU im. Gagarina Yu.A.; zayavl. 20.02.2017; opubl. 13.04.2018. Byul. № 11.
  6. Engheta N., Ziolkowski R.W. Metamaterials: Physics and Engineering Explorations / Wiley-IEEE Press. 2006. 440 p.
  7. Vinoy K.J., Jha R.M. Radar absorbing materials: from theory to design and characterization // Kluwer Academic Publishers. 1996. 190 p.
  8. Pat. RF 2456559, MPK G01J 5/20. Teplovoj priemnik izlucheniya / Olejnik A.S., Vasil’kovskij S.V., Maslov D.M.; zayavitel’ i patentoobladatel’ SGTU im. Gagarina Yu.A.; zayavl. 09.02.2011; opubl. 20.07.2012. Byul. № 20.
  9. Panfilov Yu. Nanesenie tonkix plenok v vakuume // Texnologiya e’lektronnoj promy’shlennosti. 2007. № 3. S. 76−80.
Date of receipt: 24 мая 2018 г.