We present an all solid-state, high voltage pulsed power supply for inducing stable plasma formation (density ∼1018 cm−3) in gas-filled capillary discharge waveguides. The pulser (pulse duration of 1 μs) is based on transistor switching and wound transmission line transformer technology. For a capillary of length 40 mm and diameter 265 μm and gas backing pressure of 100 mbar, a fast voltage pulse risetime of 95 ns initiates breakdown at 13 kV along the capillary. A peak current of ∼280 A indicates near complete ionization, and the r.m.s. temporal jitter in the current pulse is only 4 ns. Temporally stable plasma formation is crucial for deploying capillary waveguides as plasma channels in laser-plasma interaction experiments, such as the la...
After the feasibility of discharge pumped X-ray lasers was shown by J.J. Rocca et al., different exp...
The development of compact accelerator machines is leading towards the use of plasma-based devices t...
We measured the parameter reproducibility and radial electron density profile of capillary discharge...
We present an all solid-state, high voltage pulsed power supply for inducing stable plasma formation...
We present an all solid-state, high voltage pulsed power supply for inducing stable plasma formation...
We present an all solid-state, high voltage pulsed power supply for inducing stable plasma formation...
Demands for delivering high instantaneous power in a compressed form (pulse shape) have widely incre...
This thesis documents the development of plasma waveguides for high-intensity laser pulses. Initial ...
This thesis documents the development of plasma waveguides for high-intensity laser pulses. Initial ...
A hydrogen-filled capillary discharge waveguide operating at kHz repetition rates is presented for p...
Square wave pulses have been identified as more lethal compared to exponential decay pulses in PEF a...
1999 Fall.Includes bibliographical referencesThe direct generation by electrical discharges of hot a...
This paper will describe the techniques needed to electrically generate highly ionized dense plasmas...
A method of creating plasma channels with controllable depth and transverse profile for the guiding ...
We measured the parameter reproducibility and radial electron density profile of capillary discharge...
After the feasibility of discharge pumped X-ray lasers was shown by J.J. Rocca et al., different exp...
The development of compact accelerator machines is leading towards the use of plasma-based devices t...
We measured the parameter reproducibility and radial electron density profile of capillary discharge...
We present an all solid-state, high voltage pulsed power supply for inducing stable plasma formation...
We present an all solid-state, high voltage pulsed power supply for inducing stable plasma formation...
We present an all solid-state, high voltage pulsed power supply for inducing stable plasma formation...
Demands for delivering high instantaneous power in a compressed form (pulse shape) have widely incre...
This thesis documents the development of plasma waveguides for high-intensity laser pulses. Initial ...
This thesis documents the development of plasma waveguides for high-intensity laser pulses. Initial ...
A hydrogen-filled capillary discharge waveguide operating at kHz repetition rates is presented for p...
Square wave pulses have been identified as more lethal compared to exponential decay pulses in PEF a...
1999 Fall.Includes bibliographical referencesThe direct generation by electrical discharges of hot a...
This paper will describe the techniques needed to electrically generate highly ionized dense plasmas...
A method of creating plasma channels with controllable depth and transverse profile for the guiding ...
We measured the parameter reproducibility and radial electron density profile of capillary discharge...
After the feasibility of discharge pumped X-ray lasers was shown by J.J. Rocca et al., different exp...
The development of compact accelerator machines is leading towards the use of plasma-based devices t...
We measured the parameter reproducibility and radial electron density profile of capillary discharge...