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Image Formation by Inertialess Dynamic Holograms Recorded in a Medium with Quadratic Nonlinearity at Different Frequencies of the Object and Reference Waves

机译:通过在物体和参考波不同频率下具有二次非线性的介质中记录的无惯性动态全息图成像

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It is shown theoretically and experimentally that the hologram recorded in a quadratically nonlinear medium is capable of forming the image in the case when the wavelengths of the object and reference beams are essentially different. The relations are derived that determine the wavelength of the reconstructed image, the direction of propagation of the restored beam, and the longitudinal shift of the reconstructed image depending on the wavelength of the beam scattered by the object. The experiment is carried out in a noncollinear arrangement of interaction of the object and reference waves in the KTP crystal. As a light source, a YAG:Nd laser (λ=1.064 μm) with a pulsewidth of 300 ps was used. The wavelength of the object wave was tuned by the Ba(NO_(3))_(2) crystal, which generated from one to three Stokes SRS components with the frequency shifts Δv, 2Δv, and 3Δv (Δv=1047 cm~(-1)). These components, upon interaction with the reference wave of the fundamental frequency formed the image at the wavelengths 0.532, 0.563, and 0.6 μm with an almost diffraction-limited quality. The experimental values of the angles of propagation of the beams that formed reconstructed images at different frequency shifts of the object wave corresponded to those predicted theoretically. We have confirmed the presence and direction of longitudinal shifts of the reconstructed images upon variation of the wavelength of the light scattered by the object. Thus, we have demonstrated the feasibility of the multicolor (multiwave) holographic generation of high-quality images separated in space. The inertialess nature of the beam coupling makes it possible to use the holograms of this type for ultrafast commutation of the information fluxes in optical computers and communication lines.
机译:从理论上和实验上表明,当物体和参考光束的波长本质上不同时,记录在二次非线性介质中的全息图能够形成图像。推导关系,该关系取决于被物体散射的光束的波长,确定重建图像的波长,恢复光束的传播方向以及重建图像的纵向位移。实验是在KTP晶体中物体与参考波相互作用的非共线布置中进行的。作为光源,使用脉冲宽度为300ps的YAG:Nd激光器(λ=1.064μm)。物波的波长由Ba(NO_(3))_(2)晶体调谐,该晶体由一到三个斯托克斯SRS分量产生,频率偏移为Δv,2Δv和3Δv(Δv= 1047 cm〜(- 1))。这些成分与基频的参考波相互作用时,在波长0.532、0.563和0.6μm处形成具有几乎衍射极限质量的图像。在物波的不同频移下形成重构图像的光束的传播角的实验值与理论上的预测值相对应。我们已经证实了被物体散射的光的波长变化时,重构图像的纵向偏移的存在和方向。因此,我们证明了在空间上分离的高质量图像的多色(多波)全息照相生成的可行性。光束耦合的无惯性特性使得可以将这种全息图用于光学计算机和通信线路中信息通量的超快速换向。

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