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New holographic method for formation of 2D gratings in photorefractive materials by Bessel standing wave

机译:贝塞尔驻波法在光折变材料中形成二维光栅的全息新方法

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A counter-propagating Bessel beam technique is suggested and realized for creation of 2-dimensional (2D) holographic periodic structures (PS) in photorefractive materials. 2D PS formed by the suggested method is a combination of annular and planar gratings. The Bessel beam is formed by optical element - axicon. The recording of the gratings are performed by single mode He-Ne laser beam at 633 nm. The counter-propagating beam geometry builds up the Bessel standing wave with periodic annular structure in each anti-node. The refractive gratings are recorded in Z and Y-cut 2 mm thick Fe doped lithium niobate crystals via electro-optic effect. The read-out of 2D PS is performed by Gaussian and Bessel beams. Diffraction patterns in transmission and reflection are observed. The formed 2D PS have the half-wavelength standing wave period of-300 nm in longitudinal direction, the period of ~10 um in radial direction, and up to 10 % diffraction efficiency.
机译:提出并实现了反向传播的贝塞尔光束技术,用于在光折变材料中创建二维(2D)全息周期性结构(PS)。通过建议的方法形成的2D PS是环形和平面光栅的组合。贝塞尔光束由光学元件-轴锥形成。光栅的记录是通过在633 nm处的单模He-Ne激光束进行的。反向传播的射束几何形状在每个波腹处建立具有周期性环形结构的贝塞尔驻波。折射光栅通过电光效应记录在Z形和Y形切割的2 mm厚的Fe掺杂铌酸锂晶体中。 2D PS的读出是通过高斯光束和贝塞尔光束进行的。观察到透射和反射中的衍射图样。形成的2D PS在纵向上具有-300 nm的半波长驻波周期,在径向上具有〜10 um的周期,并且衍射效率高达10%。

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