Physics of the Solid State
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Chiral metasurfaces based on arrays of Co nanospirals obtained by glancing angle deposition
Nrushin O. S.1, Fattahov I. S.1, Popov A. A.1, Mazaletsky L. A.1,2, Gaidukasov R. A.3, Myakonkikh A. V.3
1Valiev Institute of Physics and Technology of RAS, Yaroslavl Branch, Yaroslavl, Russia
2Demidov State University, Yaroslavl, Russia
3Valiev Institute of Physics and Technology of RAS, Moscow, Russia
Email: otrushin@gmail.com

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The results of experimental studies of chiral film structures based on arrays of cobalt nanospirals obtained by glancing angle deposition are presented. It is shown that under conditions of electron beam evaporation, an array of nanospirals twisted in one direction is formed on a rotating inclined substrate. By changing the rotation speed of the substrate, the geometric dimensions of the nanospirals (spiral pitch, spiral radius) can be changed. The chiral metasurface obtained in this way demonstrates a pronounced asymmetry of optical characteristics in light reflection with respect to the right and left circular polarization. The experimental results confirm the dependence of these effects on the chirality signs of the obtained samples (that is, on the direction of twisting of the nanospirals). Keywords: nanostructured, thin films, glancing angle deposition, chiral metamaterials, circular dichroism.
  1. J.K. Gansel, M. Thiel, M.S. Rill, M. Decker, K. Bade, V. Saile, G. Freymann, S. Linden, M. Wegener. Science 325, 1513 (2009)
  2. J.G. Gibbs, A.G. Mark, S. Eslami, P. Fische. Appl. Phys. Lett. 103, 213101-1 (2013)
  3. S.H. Lee, D.P. Singh, J.H. Sung, M-H. Jo, K.C. Kwon, S.Y. Kim, H.W. Jang, J.K. Kim. Sci. Rep. 6, 19580 (2016)
  4. J. Kim, A.S. Rana, Y. Kim, I. Kim, T. Badloe, M. Zubair, M.Q. Mehmood. J. Rho Sensors 21, 4381 (2021)
  5. M.M. Hawkeye, M.T. Taschuk, M.J. Brett. Glancing Angle Deposition of Thin Films. John Wiley \& Sons, Ltd, UK (2014). 299 p
  6. O.S. Trushin, I.S. Fattakhov, A.A. Popov, L.A. Mazaletsky, A.A. Lomov, D.M. Zakharov, R.A. Gaidukasov, A.V. Myakon'kikh, L.A. Shendrikova. Physics of the Solid State 65, 6, 996 (2023)
  7. A.V. Myakon'kikh, E.A. Smirnova, I.E. Klemente. Russian microelctronics 50, 4, 230 (2021)
  8. H. Fujiwara Spectroscopic Ellipsometry Principles and Applications. John Wiley \& Sons, Ltd (2007). 392 p
  9. M. Faryad, A. Lakhtakia. Adv. Opt. Photon. 6, 225 (2014)
  10. M. Schaferling. Chiral Nanophotonics. Springer Ser. Opt. Sci. Springer International Publishing Switzerland (2017)

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