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Astigmatic transformation of Bessel beams in a uniaxial crystal

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
We investigate theoretically and experimentally the astigmatic transformations of Bessel beams at propagation perpendicularly to the c-axis of a uniaxial crystal. The analogy between this transformation and the astigmatic distortion of the plane wave by an inclined axicon is analytically shown. The influence of the polarization direction of radiation relative to the c-axis of a crystal on electric field components of the ordinary and the extraordinary beams is investigated.
Czasopismo
Rocznik
Strony
5--18
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
  • Image Processing Systems Institute of the RAS, Molodogvardeyskaya 151, Samara, 443001, Russia
  • Samara State Aerospace University, Moskovskoye Shosse 34, Samara, 443086, Russia
  • Samara State Aerospace University, Moskovskoye Shosse 34, Samara, 443086, Russia
  • Image Processing Systems Institute of the RAS, Molodogvardeyskaya 151, Samara, 443001, Russia
  • Samara State Aerospace University, Moskovskoye Shosse 34, Samara, 443086, Russia
Bibliografia
  • [1] KHILO N.A., PETROVA E.S., RYZHEVICH A.A., Transformation of the order of Bessel beams in uniaxial crystals, Quantum Electronics 31(1), 2001, pp. 85–89.
  • [2] HACYAN S., JÁUREGUI R., Evolution of optical phase and polarization vortices in birefringent media, Journal of Optics A: Pure and Applied Optics 11(8), 2009, article 085204.
  • [3] ZUSIN D.H., MAKSIMENKA R., FILIPPOV V.V., CHULKOV R.V., PERDRIX M., GOBERT O., GRABTCHIKOV A.S., Bessel beam transformation by anisotropic crystals, Journal of the Optical Society of America A 27(8), 2010, pp. 1828–1833.
  • [4] KHILO N.A., Diffraction and order conversion of Bessel beams in uniaxial crystals, Optics Communications 285(5), 2012, pp. 503–509.
  • [5] KHONINA S.N., MOROZOV A.A., KARPEEV S.V., Effective transformation of a zero-order Bessel beam into a second-order vortex beam using an uniaxial crystal, Laser Physics 24(5), 2014, article 056101.
  • [6] LOUSSERT C., BRASSELET E., Efficient scalar and vectorial singular beam shaping using homogeneous anisotropic media, Optics Letters 35(1), 2010, pp. 7–9.
  • [7] KHONINA S.N., KHARITONOV S.I., Comparative investigation of nonparaxial mode propagation along the axis of uniaxial crystal, Journal of Modern Optics 62(2), 2015, pp. 125–134.
  • [8] KHONINA S.N., KARPEEV S.V., ALFEROV S.V., SOIFER V.A., Generation of cylindrical vector beams of high orders using uniaxial crystals, Journal of Optics 17(6), 2015, article 065001.
  • [9] CIATTONI A., PALMA C., Nondiffracting beams in uniaxial media propagating orthogonally to the optical axis, Optics Communications 224(4–6), 2003, pp. 175–183.
  • [10] DAJUN LIU, ZHONGXIANG ZHOU, Various dark hollow beams propagating in uniaxial crystals orthogonal to the optical axis, Journal of Optics A: Pure and Applied Optics 10(9), 2008, article 095005.
  • [11] CHENGLIANG ZHAO, YANGJIAN CAI, Paraxial propagation of Lorentz and Lorentz–Gauss beams in uniaxial crystals orthogonal to the optical axis, Journal of Modern Optics 57(5), 2010, pp. 375–384.
  • [12] GUOQUAN ZHOU, RUIPIN CHEN, XIUXIANG CHU, Propagation of Airy beams in uniaxial crystals orthogonal to the optical axis, Optics Express 20(3), 2012, pp. 2196–2205.
  • [13] ZHAO BIN, LI ZHU, Diffraction property of an axicon in oblique illumination, Applied Optics 37(13), 1998, pp. 2563–2568.
  • [14] KHONINA S.N., KOTLYAR V.V., SOIFER V.A., JEFIMOVS K., PÄÄKKÖNEN P., TURUNEN J., Astigmatic Bessel laser beams, Journal of Modern Optics 51(5), 2004, pp. 677–686.
  • [15] BURVALL A., KOŁACZ K., GONCHAROV A.V., JAROSZEWICZ Z., DAINTY C., Lens axicons in oblique illumination, Applied Optics 46(3), 2007, pp. 312–318.
  • [16] BENDERSKY A., PEREZ QUINTIAN F., REBOLLO M.A., Modification of the structure of Bessel beams under oblique incidence, Journal of Modern Optics 55(15), 2008, pp. 2449–2456.
  • [17] ANGUIANO-MORALES M., Transformation of Bessel beams by means of a cylindrical lens, Applied Optics 48(25), 2009, pp. 4826–4831.
  • [18] MANSURIPUR M., Certain computational aspects of vector diffraction problems, Journal of the Optical Society of America A 6(6), 1989, pp. 786–805.
  • [19] KHONINA S.N., USTINOV A.V., KOVALYOV A.A., VOLOTOVSKY S.G., Near-field propagation of vortex beams: models and computation algorithms, Optical Memory and Neural Networks 23(2), 2014, pp. 50–73.
  • [20] KHONINA S.N., KHARITONOV S.I., An analog of the Rayleigh–Sommerfeld integral for anisotropic and gyrotropic media, Journal of Modern Optics 60(10), 2013, pp. 814–822.
  • [21] BATEMAN H., ERDELYI A., Higher Transcendental Functions, Vol. 1, McGraw-Hill, New York, 1953.
  • [22] PRUDNIKOV A.P., BRYCHKOV Y.A., MARICHEV O.I., Integrals and Series: Elementary Functions, Vol. 1, Nauka Publisher, Moscow, 1983 (in Russian).
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-be9d20a2-6393-43a1-a394-65f6d43cdbc5
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