JOURNAL ARTICLE

<title>A Single-Shot Measurement Of A Picosecond Optical Pulse Waveform</title>

Ryuji KogaMasami EbaraMegumi KosakaHiroya Sano

Year: 1981 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 0236 Pages: 373-381   Publisher: SPIE

Abstract

A waveform monitoring for a picoseconds-width, single-shot optical pulse is possible with optical circuit of optical fibers and LiTaO3 Pockel's cell. This method is based on having cross correlation integral between delayed signals and a single step function. The inquired waveform is reproduced by a deconvolution. The principle can be implemented by four fundamental functions, branching to make replicas of a source signal, delay, optical gate, and time integration. Optical fibers were employed as delay lines whose delay time is controlled by their length. A small cylindrical lens was used for the branching from a single optical fiber to a bundle of fibers as delay lines. The optical gate is composed of a LiTaO3 Pockel's cell which is driven by a specifically manufactured optoelectronic switch. The time integration is achieved by photodiodes whose electric charge output is proportional to the energy, a time integral of temporal power,of the incident optical pulse. Experiments were made for a 2ns FWHM optical pulse of a dye laser, which demonstrates the expected ability. Very fast A/D conversion for a picosecond optical pulse waveform is basically possible, which is more profittable than a pure electronic metnod.

Keywords:
Picosecond Optics Waveform Optical fiber Optical power Physics Optical modulation amplitude Photodiode Pulse-width modulation Optoelectronics Materials science Power (physics) Optical amplifier Laser Voltage

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Topics

Advanced Fiber Laser Technologies
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics
Advanced Photonic Communication Systems
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Photonic and Optical Devices
Physical Sciences →  Engineering →  Electrical and Electronic Engineering

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