Open Access
Issue
ITM Web Conf.
Volume 30, 2019
29th International Crimean Conference “Microwave & Telecommunication Technology” (CriMiCo’2019)
Article Number 08011
Number of page(s) 6
Section Nanoelectronics and Nanotechnology (5b)
DOI https://doi.org/10.1051/itmconf/20193008011
Published online 27 November 2019
  1. I.V. Antonetz, L.N. Kotov, S.V. Nekipelov, S.V. Karpushev. Technical Physics 74(11)p. 102-106 (2004) [Google Scholar]
  2. I.V. Antonetz, L.N. Kotov, E.A. Golubev, S.N. Petrunev. Arctic Evironmental Research p. 50-57, (2008) [Google Scholar]
  3. S.P. Arsenichev, M.V. Glumova, E.V. Grigoryev, S.A. Zuev, A.S. Mazinov, V.B. Orlenson, A.G. Nalogin, V.V.Starostenko, I.Sh. Fitaev. Surface characteristics of amorphous substrates and nanometer conductive films. CriMiCo’2018 28th International Crimean Conference Microwave and Telecommunication Technology. Conference Proceedings. Sevastopol, 1022 (2018) [Google Scholar]
  4. R. C. Rumpf http://emlab.utep.edu, Multiple Scattering. [Google Scholar]
  5. W. Woltersdorff The Optical Constants of Thin Metal Films in the Long-Wave Ultra-Red Region. Z. Physilc, 91, 230 (1934) [CrossRef] [Google Scholar]
  6. H. Murmann, Z. Phyzik, 54, 741 (1929) [Google Scholar]
  7. M. Cherny, H. Reder. Infrared Technology Advances. Physics-Uspekhi 25(1) (1941) [Google Scholar]
  8. Sucheng Li, Shahzad Anwar, Weixin Lu, Zhi Hong Hang, Bo Hou, Mingrong Shen, and Chin-Hua Wang. Microwave absorptions of ultrathin conductive films and designs of frequency-independent ultrathin absorbers. AIP ADVANCES, 4 (2014) [Google Scholar]
  9. V.G. Andreev, V.A. Vdovin, S.M. Pronin, I.A. Horin. Measurement of nanometer metal films optical coefficients at a frequency of 10 GHz. Journal of Radio Electronics ISSN 1684-1719, 11 (2017) [Google Scholar]
  10. V.A. Vdovin. Nanometer metal films in sensors of powerful microwave pulses. III Russian Conference «Radar and radio communications» - Kotel‘nikov institute of radio engineering and electronics of RAS, 26 – 30 october (2009) [Google Scholar]
  11. S.M. Pronin, V.A. Vdovin, V.G. Andreev. Optical coefficients investigation of copper and gold nanometer films in the microwave range. Physics Faculty scientific letters. 5 (2016) [Google Scholar]
  12. M. G. Moharam, Drew A. Pommet, Eric B. Grann, “Stable implementation of the rigorous coupled-wave analysis for surface-relief gratings: enhanced transmittance matrix approach. J. Opt. Soc. Am. A, Vol. 12, No. 5, pp. 1077‐1086 (May 1995) [CrossRef] [Google Scholar]
  13. R.C. Rumpf. Improved formulation of scattering matrices for semi-analytical method that is consistent with convention. Progress In Electromagnetics Research B, Vol. 35, 241 – 261 (2011) [CrossRef] [Google Scholar]

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