Time- and Frequency-Domain Characteristics of Direct-Detection Acousto-Optic Delay Lines

被引:0
|
作者
A. R. Hasanov
R. A. Hasanov
R. A. Ahmadov
E. A. Agayev
机构
[1] Azerbaijan National Aviation Academy,
来源
Measurement Techniques | 2019年 / 62卷
关键词
acoustic optics; transfer response; photodetector; Bragg diffraction; frequency response; impulse response; frequency transfer coefficient;
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学科分类号
摘要
We discuss various details regarding the practical use of direct-detection acousto-optic delay lines, and develop a mathematical model for the input signal. An expression for the transient response was obtained and used to determine the acousto-optic delay line response to an boxcar input signal. This expression for the transient response was used to determine the cutoff frequency of the acousto-optic delay line and derive an equation for the impulse response to determine the acousto-optic transmission coefficient of the acoustooptic delay line as a function of frequency. The resulting equations are confirmed by numerical examples. The numerical results were in turn experimentally validated using the direct-detection acousto-optic delay line model developed in this paper. The theoretical and experimental results were compared using two criteria: the output response to a boxcar input signal and the cutoff frequency of the frequency response curve. The cutoff frequency was obtained using an oscillogram of the output pulse and the experimentally determined frequency response. A comparison of the theoretical and experimental results indicated that the time- and frequency-domain equations for the response curves have high potential for time-domain processing of broadband analog signals.
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页码:817 / 824
页数:7
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