频率选择材料中皮秒和飞秒受激光子回波存储数据的擦除

R. Kaarli
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引用次数: 0

摘要

受激光子回波[3]的时空全息[1,2]提供了一种存储超快变化光信号的时间和空间特性并在任何稍后时刻召回其真实副本的方法。记录光脉冲的复杂时间形状的可能性,也意味着时域光学数据存储,是基于频率选择吸收器以高精度存储入射光的时间傅里叶分量的能力[1-3]。二进制或模拟数据的时域选频光存储是对频率选频高密度数据存储概念的一种替代方法,它在频域提供了并行的超快数据存储和处理。要存储的信号的最短细节受到存储介质的反向非均匀带宽的限制,对于频率选择材料,该带宽可达10-100 fs,而信号的持续时间则受到相松弛时间T2的限制(通常为10−9-10−6s)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Erasure of Data Stored by Pico- and Femtosecond Stimulated Photon Echoes in Frequency-Selective Materials
Time-and-space-domain holography [1,2] by stimulated photon echoes [3] provides a means of storing temporal and spatial properties of an ultrafast-varying light signal and recalling its authentic replica at any later moment. The possibility of recording complex time shapes of light pulses, which also means time-domain optical data storage, is based on the ability of frequency-selective absorbers to store with high accuracy the temporal Fourier components of the incident light [1-3]. The time-domain frequency-selective optical storage of binary or analog data is an alternative approach to the concept of frequency-selective high-density data storage that provides a parallel ultrafast data storage and processing in the frequency domain. The shortest detail of the signal to be stored is limited by the reverse inhomogeneous bandwidth of the storing media which reaches 10-100 fs for frequency-selective materials while the duration of the signal is limited by phase relaxation time T2 (usually 10−9-10−6s).
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