Syncnrotron X-ray Diffraction Imaging of Photorefractive Crystals

G. Fogarty, M. Cronin-Golomb
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Abstract

Signal processing in photorefractive crystals is complicated by photore­fractive amplified scattering (fanning). The scattering centers responsible for seeding the fanning noise may be presumed to be traceable to crystal lattice irregularities. These defects have not yet been examined in any great detail, and the relative importance of various specific imperfections and the role they play in the crystal optics are not known. An understanding of these defects should lead to improvement in signal processing through growth of more satisfactory photorefractive crystals. We have set out to address these problems through direct, in situ observation of photorefractive crystals and their gratings in barium titanate by high resolution monochromatic synchrotron x-ray diffraction imaging. The results that we report here indicate the nature of the principal limiting imperfections and demonstrate the feasability of direct observation of photorefractive gratings and scattering centers.
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光折变晶体的同步加速器x射线衍射成像
光折变晶体中的信号处理由于光折变放大散射而变得复杂。负责播撒扇形噪声的散射中心可以假定可追溯到晶格的不规则性。这些缺陷还没有被详细地研究过,各种特定缺陷的相对重要性以及它们在晶体光学中所起的作用还不为人所知。对这些缺陷的了解可以通过生长更令人满意的光折变晶体来改善信号处理。我们已经着手通过高分辨率单色同步x射线衍射成像对钛酸钡中的光折变晶体及其光栅的直接原位观察来解决这些问题。我们在这里报告的结果表明了主要限制缺陷的性质,并证明了直接观测光折变光栅和散射中心的可行性。
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