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Construction and temporal behaviour study of multi RLC intense light pulses for dermatological applications
Walid K Hamoudi1, Raid A Ismail1, Hussein A Shakir1
1a Laser Physics Division, Applied Sciences Department , University of Technology , Baghdad , Iraq.
Abstract:
Driving a flash lamp in an intense pulsed light system requires a high-voltage DC power supply, capacitive energy storage and a flash lamp triggering unit. Single, double, triple and quadruple-mesh discharge and triggering circuits were constructed to provide intense light pulses of variable energy and time durations. The system was treated as [Formula: see text] circuit in some cases and [Formula: see text] circuit in others with a light pulse profile following the temporal behaviour of the exciting current pulse. Distributing the energy delivered to one lamp onto a number of LC meshes permitted longer current pulses, and consequently increased the light pulse length. Positive results were obtained when using the system to treat skin wrinkles.

