High-voltage pulse generator based on LTD concept for CuBr+Ne+HBr laser media excitation

Author:

Semenov Konstantin Yu.1,Gembukh Pavel I.1,Trigub Maxim V.1

Affiliation:

1. V.E. Zuev Institute of Atmospheric Optics SB RAS

Abstract

Abstract The paper presents the power supply based on the LTD-generator concept for active elements on metal halide vapors excitation. The main source feature is the modular structure which allow to increase output voltage and change storage capacity due to the number of modules. Each module is designed to minimize parasitic parameters and provide high voltage and current slew rates to the GDT. The limit parameters of one module are as follows: maximum voltage 1100 V, maximum pre-pulse energy in the storage capacity 9.0 mJ. The results of the excitation of the active media at the different pulse repetition frequency are presented. For the first time the 1.5 W radiation power was obtained for the laser excited by this type of power supply.

Publisher

Research Square Platform LLC

Reference24 articles.

1. Alekseev S.V., Losev V.F., Yastremskii A.G. Results of Studies of the High-Power Visible THL-100 Laser System // Atmospheric and Oceanic Optics. 2022. Vol. 35, № 5. P. 606–610.

2. Hongda Li, Andreev M.V., Panchenko Yu.N., Puchikin A.V. Improving the Stability of the Optical System of a Laser Source Based on a Position-Sensitive Detector // Atmospheric and Oceanic Optics. 2022. Vol. 35, № 5. P. 615–619.

3. Razhev A.M., Churkin D.S., Trunov I.A., Tkachenko R.A. Neon Laser with Wavelengths of 540.1 and 614.3 nm Pumped by a Pulsed Inductive Cylindrical Discharge // Atmospheric and Oceanic Optics. 2022. Vol. 35, № 5. P. 584–588.

4. Anufrick S.S., Volodenkov A.P., Znosko K.F., Losev V.F. An Excimer XeCl Minilaser // Atmospheric and Oceanic Optics. 2022. Vol. 35, № 5. P. 601–605.

5. Statistical Simulation of Characteristics of an Optical Communication Channel Based on Scattered Radiation with an Unmanned Aerial Vehicle // Atmospheric and Oceanic Optics;Tarasenkov MV,2022

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