Photonics Research, Volume. 9, Issue 5, 687(2021)

Spatiospectral transformation of noncollimated light beams diffracted by ultrasound in birefringent crystals

Alexey V. Gorevoy, Alexander S. Machikhin*, Grigoriy N. Martynov, and Vitold E. Pozhar
Author Affiliations
  • Laboratory of Acousto-optic Spectroscopy, Scientific and Technological Center of Unique Instrumentation, Russian Academy of Sciences, Moscow 117342, Russia
  • show less
    Figures & Tables(5)
    General wavevector diagram (left part) and schematic configuration of the AO cell (right part) for anisotropic (e→o) AO interaction in uniaxial birefringent crystal.
    Surface |Δkm(λ0,δθi1,δθi2)|=0 and the cross sections of the normalized transmission function T(λ0,δθi1,δθi2)/(ΓL)2 for (a) collinear and (b) noncollinear geometries of AO anisotropic diffraction.
    Map of the normalized transmission functions T(δθi1,δθi2)/(ΓL)2 in uniaxial crystal at λ0=λs=600 nm. The ranges of δθi1 and δθi2 in each subimage are ±10°. Two green rectangles mark the geometries shown in Fig. 2. Wide-aperture geometries are highlighted by the cyan arc.
    Experimental setup for measuring 2D transmission functions: MC, monochromator; D, diffuser plate; L1, L2, L3, lenses; P1, P2, polarizers; AOTF, acousto-optical tunable filter; C, camera.
    (a) Simulated (upper row) and experimental (lower row) images I(δθd1,δθd2) captured by the monochrome camera with the AOTF tuned to λs=600 nm (fs=85.5 MHz) for different central wavelengths λMC of the monochromator MC with 1 nm slit width. The ranges of δθd1 and δθd2 in all subimages are ±5°. (b) The dependence of normalized light intensity on λMC for points 1 and 2 shown in the right part of (a). The simulated and experimental images captured by the color camera with the AO cell tuned to λs=580 nm (fs=89.2 MHz): for (c) 1 nm and (d) 6.5 nm slit width.
    Tools

    Get Citation

    Copy Citation Text

    Alexey V. Gorevoy, Alexander S. Machikhin, Grigoriy N. Martynov, Vitold E. Pozhar. Spatiospectral transformation of noncollimated light beams diffracted by ultrasound in birefringent crystals[J]. Photonics Research, 2021, 9(5): 687

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Optical Devices

    Received: Dec. 17, 2020

    Accepted: Feb. 17, 2021

    Published Online: Apr. 26, 2021

    The Author Email: Alexander S. Machikhin (machikhin@ntcup.ru)

    DOI:10.1364/PRJ.417992

    Topics