Abstract
Photoconductive semiconductor switching (PCSS) devices have unique characteristics to address the growing need for electrically isolated, optically gated, picosecond-scale jitter devices capable of operating at high voltage, current, and frequency. The state of the art in material selection, doping, triggering, and system integration in PCSSs is presented. The material properties and doping considerations of GaN, GaAs, SiC, diamond, and β-Ga2O3 in the fabrication of PCSS devices are discussed. A review of the current understanding of the physics of the high-gain mode known as lock-on is presented.
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CITATION STYLE
Meyers, V., Voss, L., Flicker, J. D., Rodriguez, L. G., Hjalmarson, H. P., Lehr, J., … Kaplar, R. (2025, January 1). Photoconductive Semiconductor Switches: Materials, Physics, and Applications. Applied Sciences (Switzerland). Multidisciplinary Digital Publishing Institute (MDPI). https://doi.org/10.3390/app15020645
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