Polarization specific features of light diffraction by holographic phase gratings in “reoksan” medium
Problemy fiziki, matematiki i tehniki, no. 3 (2021), pp. 14-18.

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The polarization and energy characteristics of diffracted zero- and first-order waves under Bragg diffraction of light on holographic phase gratings in a “reoksan” medium with a significant amplitude of the refractive index of the recording medium are theoretically investigated. It is founded that the reflection and transmission coefficients of diffracted waves for the $s$- and $p$-polarization of incident light experience significant changes when the refractive index of the layer is modulated. It is shown that under the conditions of Fresnel reflection of light waves from the boundaries of the modulated layer and the increase in the amplitude of the perturbation of the refractive index of the medium, there is a significant rotation of the polarization plane of the diffracted wave for the transmitted and reflected diffraction orders.
Keywords: holographic phase grating, Bragg light diffraction, Fresnel reflection, light modulation, holographic “reoksan” medium.
Mots-clés : reflection and transmission coefficients
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     author = {G. V. Kulak and V. N. Naunyka and T. V. Nikolaenko},
     title = {Polarization specific features of light diffraction by holographic phase gratings in {\textquotedblleft}reoksan{\textquotedblright} medium},
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G. V. Kulak; V. N. Naunyka; T. V. Nikolaenko. Polarization specific features of light diffraction by holographic phase gratings in “reoksan” medium. Problemy fiziki, matematiki i tehniki, no. 3 (2021), pp. 14-18. http://geodesic.mathdoc.fr/item/PFMT_2021_3_a1/

[1] N.S. Shelekhov, O.V. Bandyuk, A.P. Popov, A.O. Rebezov, “Ispolzovanie fenantrenkhinona dlya formirovaniya fazovykh trekhmernykh gologramm v srede reoksana”, Opticheskaya golografiya s zapisyu v trekhmernykh sredakh, Sb. nauchnykh trudov, ed. Yu.N. Denisyuk, Nauka, L., 1986, 74–82

[2] A.N. Popov, A.F. Kavtrev, A.V. Veniaminov, G.I. Lashkov, “Dlinnovolnovaya granitsa spektralnoi chuvstvitelnosti polimerov reoksana”, Opticheskaya golografiya s zapisyu v trekhmernykh sredakh, Sb. nauchnykh trudov, ed. Yu.N. Denisyuk, Nauka, L., 1986, 82–91

[3] J.A. Kong, “Second-order coupled-mode equations for spatially periodic media”, J. Opt. Soc. Am., 67:6 (1977), 825–829 | DOI

[4] G.V. Kulak, “Difraktsiya sveta na ultrazvuke v usloviyakh frenelevskogo otrazheniya”, Opt. i spektr., 76:6 (1994), 1027–1029

[5] V.A. Barachevskii, “Sovremennoe sostoyanie razrabotki svetochuvstvitelnykh sred (obzor)”, Opt. i spektr., 124:3 (2018), 371–399

[6] M. Born, E. Volf, Osnovy optiki, Nauka, M., 1973, 721 pp.

[7] H. Kogelnik, “Coupled wave theory for thick hologram gratings”, The Bell Syst. Tech. Journal, 48:9 (1969), 2909–2947 | DOI