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光谱烧孔材料中的频率和相位扫描全息图。

Frequency and phase swept holograms in spectral hole-burning materials.

作者信息

Bernet S, Altner S B, Graf F R, Maniloff E S, Renn A, Wild U P

出版信息

Appl Opt. 1995 Aug 1;34(22):4674-84. doi: 10.1364/AO.34.004674.

Abstract

A new hologram type in spectral hole-burning systems is presented. During exposure, the frequency of narrow-band laser light is swept over a spectral range that corresponds to a few homogeneous linewidths of the spectrally selective recording material. Simultaneously the phase of the hologram is adjusted as a function of frequency-the phase sweep function. Because of the phase-reconstructing properties of holography, this recording technique programs the sample as a spectral amplitude and phase filter. We call this hologram type frequency and phase swept (FPS) holograms. Their properties and applications are summarized, and a straightforward theory is presented that describes all the diffraction phenomena observed to date. Thin FPS holograms show strongly asymmetric diffraction into conjugated diffraction orders, which is an unusual behavior for thin transmission holograms. Investigations demonstrate the advantages of FPS holograms with respect to conventional cw recording techniques in freq ncymultiplexed data storage. By choosing appropriate phase sweep functions, various features of holographic data storage can be optimized. Examples for cross-talk reduction, highest diffraction efficiency, and maximal readout stability are demonstrated. The properties of these FPS hologram types are deduced from theoretical considerations and confirmed by experiments.

摘要

本文介绍了光谱烧孔系统中的一种新型全息图。在曝光过程中,窄带激光的频率在一个光谱范围内扫描,该光谱范围对应于光谱选择性记录材料的几个均匀线宽。同时,全息图的相位作为频率的函数进行调整——相位扫描函数。由于全息术的相位重建特性,这种记录技术将样品编程为光谱幅度和相位滤波器。我们将这种全息图类型称为频率和相位扫描(FPS)全息图。总结了它们的特性和应用,并提出了一种简单的理论来描述迄今为止观察到的所有衍射现象。薄的FPS全息图在共轭衍射级中显示出强烈的不对称衍射,这对于薄透射全息图来说是一种不寻常的行为。研究表明,在频率复用数据存储方面,FPS全息图相对于传统的连续波记录技术具有优势。通过选择合适的相位扫描函数,可以优化全息数据存储的各种特性。展示了减少串扰、最高衍射效率和最大读出稳定性的示例。这些FPS全息图类型的特性是从理论考虑推导出来的,并通过实验得到证实。

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