Paper
29 February 1980 Integrated Optic Spectrum Analyzer
M. K. Barnoski, B. Chen, T. R. Joseph, J. Y. Lee, O. G. Ramer
Author Affiliations +
Proceedings Volume 0209, Optical Signal Processing for C3I; (1980) https://doi.org/10.1117/12.958297
Event: Optical Signal Processing for C3l, 1979, Boston, United States
Abstract
This paper describes the integrated-optic implementation of a Bragg spectrum analyzer that employs the interaction between a coherent optical guided wave and a surface acoustic wave to determine the power spectral density of the input. The integrated-optic spectrum analyzer consists of an injection laser diode, a thin-film optical waveguide, waveguide lenses, a surface-acoustic-wave transducer, and a linear detector array with CCD readout. Design principles are given for selecting component parameters such as optical beam width, detector cell size, lens aperture and focal length, and acoustic transducer design so as to obtain specific rf resolution, spurious level, and signal-to-noise ratio. Design parameters are presented for a 750- to 1250-MHz spectrum analyzer with a resolution of 4 MHz and a 40-dB dynamic range. Also described in the paper is the development of state-of-the-art component technology for the spectrum analyzer.
© (1980) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
M. K. Barnoski, B. Chen, T. R. Joseph, J. Y. Lee, and O. G. Ramer "Integrated Optic Spectrum Analyzer", Proc. SPIE 0209, Optical Signal Processing for C3I, (29 February 1980); https://doi.org/10.1117/12.958297
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CITATIONS
Cited by 24 scholarly publications.
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KEYWORDS
Transducers

Waveguides

Acoustics

Charge-coupled devices

Sensors

Electrodes

Lenses

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