Method and apparatus for fast laser pulse detection using gaseou

Optics: measuring and testing – Photometers – Photoelectric

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136254, 250212, 313524, G01J 142, H01J 4000

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active

044471513

ABSTRACT:
The method and device of the instant invention is a detector of pulsed laser radiation which utilizes the electromotive force generated by the plasma formed when such radiation is focused onto a surface (1). Measurements are made with a 10.6 .mu.m CO.sub.2 laser capable of producing peak intensities of 10.sup.13 W/cm.sup.2 when directed through a converging lens (2). Evacuated detector response to such laser intensity is 1 kV signal peak amplitude and subnanosecond risetimes into a 50.OMEGA. load (3). Detector performance is found to be greatly altered with the introduction of a background gas (4). For example, with one atmosphere of air, the detector produces prompt signals of the order of 1 V with subnanosecond response for pulse trains lasting 100 ns. With argon, krypton, or zenon at pressures of the order of 10 torr, the detector generates "trigger pulses" of about 250 V amplitude and 0.2 ns risetimes. Such detectors are quite robust when irradiated with high intensity laser radiation and are useful for qualitative laser beam monitoring.

REFERENCES:
patent: 4264375 (1981-04-01), Silfvast et al.
"Direct Conversion of CO.sub.2 Laser Energy to High Voltage Electrical Eny Using Laser Produced Plasma", Silfvast et al., Applied Physics Letters, vol. 31, No. 11, Dec. 1, 1977, pp. 726-728.

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