Present-day Z-pinch experiments generate 200 TW peak power, 5–10 ns duration x-ray bursts that provide new possibilities to advance radiation science. The experiments support both the underlying atomic and plasma physics, as well as inertial confinement fusion and astrophysics applications. A typical configuration consists of a sample located 1–10 cm away from the pinch, where it is heated to 10–100 eV temperatures by the pinch radiation. The spectrally-resolved sample-plasma absorption is measured by aiming x-ray spectrographs through the sample at the pinch. The pinch plasma thus both heats the sample and serves as a backlighter. Opacitymeasurements with this source are promising because of the large sample size, the relatively long radia...
Foam Z-pinch experiments have been performed on the SATURN and Z machines at Sandia National Laborat...
A thorough investigation of a pulsed plasma x-ray source is presented with the intent of improving i...
Wire array z-pinches provide an accessible means to research plasmas of high density and temperature...
Present-day Z-pinch experiments generate 200 TW peak power, 5–10 ns duration x-ray bursts that provi...
Present-day Z-pinch experiments generate similar to2 x 10(21) erg/s peak power, similar to6 ns full-...
The investigation of Z-pinches on university-scale pulsed power generators allows for the study of p...
Recent developments in pulsed power technology demonstrate use of intense radiation sources (Z pinch...
Z-pinches created using the Z accelerator generate {approximately}220 TW, 1.7 MJ radiation pulses th...
Abstract. The spectral characteristics of plasma radiation of a gas Z-pinch with a rise time of 1 s ...
Abstract — X-ray radiation characteristics of argon plasma produced by a gas-puff Z-pinch device wer...
X-ray radiation characteristics of argon plasma produced by a gas-puff Z-pinch device were investiga...
Fast z-pinch implosions can convert more than 10% of the stored electrical energy in a pulsed-power ...
Fast z-pinch implosions can convert more than 10% of the stored electrical energy in a pulsed-power ...
International audienceUniversity-scale Z-pinch generators are able to produce High Energy Density (H...
International audienceUniversity-scale Z-pinch generators are able to produce High Energy Density (H...
Foam Z-pinch experiments have been performed on the SATURN and Z machines at Sandia National Laborat...
A thorough investigation of a pulsed plasma x-ray source is presented with the intent of improving i...
Wire array z-pinches provide an accessible means to research plasmas of high density and temperature...
Present-day Z-pinch experiments generate 200 TW peak power, 5–10 ns duration x-ray bursts that provi...
Present-day Z-pinch experiments generate similar to2 x 10(21) erg/s peak power, similar to6 ns full-...
The investigation of Z-pinches on university-scale pulsed power generators allows for the study of p...
Recent developments in pulsed power technology demonstrate use of intense radiation sources (Z pinch...
Z-pinches created using the Z accelerator generate {approximately}220 TW, 1.7 MJ radiation pulses th...
Abstract. The spectral characteristics of plasma radiation of a gas Z-pinch with a rise time of 1 s ...
Abstract — X-ray radiation characteristics of argon plasma produced by a gas-puff Z-pinch device wer...
X-ray radiation characteristics of argon plasma produced by a gas-puff Z-pinch device were investiga...
Fast z-pinch implosions can convert more than 10% of the stored electrical energy in a pulsed-power ...
Fast z-pinch implosions can convert more than 10% of the stored electrical energy in a pulsed-power ...
International audienceUniversity-scale Z-pinch generators are able to produce High Energy Density (H...
International audienceUniversity-scale Z-pinch generators are able to produce High Energy Density (H...
Foam Z-pinch experiments have been performed on the SATURN and Z machines at Sandia National Laborat...
A thorough investigation of a pulsed plasma x-ray source is presented with the intent of improving i...
Wire array z-pinches provide an accessible means to research plasmas of high density and temperature...