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Plasma and radiation detection via fiber interferometry

Journal of Applied Physics

Bays, Nathan R.; Bell, K.; Fox, Brian P.; Jones, Scott C.; Knapp, P.F.; Gomez, Matthew R.; Porwitzky, A.; Laity, George R.

Photonic Doppler velocimetry tracks motion during high-speed, single-event experiments using telecommunication fiber components. The same technology can be applied in situations where there is no actual motion, but rather a change in the optical path length. Migration of plasma into vacuum alters the refractive index near a fiber probe, while intense radiation modifies the refractive index of the fiber itself. Lastly, these changes can diagnose extreme environments in a flexible, time-resolved manner.

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Zero to 1,600 m/s in 40 microns: Sensitive pulse shaping for materials characterization on Z

Procedia Engineering

Porwitzky, A.; Seagle, Cristopher T.; Jensen, Brian J.

Dynamic materials properties experiments on Sandia National Laboratories Z Machine require increasingly precise electrical current pulse shaping. In the experiment described here, a copper flyer plate is accelerated from rest to 1,600 m/s over a 40 micron flight gap in 50 ns. This flyer then impacts a cerium sample, shock melting the cerium, before subsequent quasi-isentropic ramping to mega-bar pressures. Through predictive simulations, postdicted analysis, and a new computational tool for characterizing inherent Z Machine timing accuracy, qualitative estimates of pulse controllability and experimental design robustness are arrived upon.

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Results 51–58 of 58
Results 51–58 of 58
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