Output list
1–10 of 19 results
Journal article
Published 04/12/2024
Physical review letters, 132, 15, 155101
The sheared -flow -stabilized Z pinch concept has been studied extensively and is able to produce fusionrelevant plasma parameters along with neutron production over several microseconds. We present here elevated electron temperature results spatially and temporally coincident with the plasma neutron source. An optical Thomson scattering apparatus designed for the FuZE device measures temperatures in the range of 1 -3 keV on the axis of the device, 20 cm downstream of the nose cone. The 17 -fiber system measures the radial profiles of the electron temperature. Scanning the laser time with respect to the neutron pulse time over a series of discharges allows the reconstruction of the T e temporal response, confirming that the electron temperature peaks simultaneously with the neutron output, as well as the pinch current and inductive voltage generated within the plasma. Comparison to spectroscopic ion temperature measurements suggests a plasma in thermal equilibrium. The elevated T e confirms the presence of a plasma assembled on axis, and indicates limited radiative losses, demonstrating a basis for scaling this device toward net gain fusion conditions.
Journal article
Implementation of extreme ultraviolet spectroscopy on a sheared-flow-stabilized Z pinch
First online publication 08/22/2023
Review of Scientific Instruments, 94, 8, 083507
Journal article
Published 2023
High Power Laser Science and Engineering, 11, e49
Journal article
HVDC Surface Flashover in Compressed Air for Various Dielectrics
Published 12/2020
IEEE Transactions on Dielectrics and Electrical Insulation, 27, 6, 1982-1988
Journal article
Comprehensive Optical Strain Sensing Through the Use of Colloidal Quantum Dots
Published 09/30/2020
ACS Applied Materials & Interfaces, 12, 39, 44156-44162
Journal article
Published 12/01/2019
Journal of fusion energy, 38, 5-6, 557 - 557
Journal article
Ultra-high-bandwidth polarization interferometry and optimal quadratic phase detection
Published 08/2019
Review of Scientific Instruments, 90, 8, 083503
Journal article
Published 02/2019
Contributions to Plasma Physics, 59, 2, 181-188
Journal article
Published 11/01/2016
Review of scientific instruments, 87, 11, 11E725 - 11E725
The technique of fiber optic pulsed polarimetry, which provides a distributed (local) measurement of the magnetic field along an optical fiber, has been improved to the point where, for the first time, photocathode based optical detection of backscatter is possible with sub-mm spatial resolutions. This has been realized through the writing of an array of deterministic fiber Bragg gratings along the fiber, a so-called backscatter-tailored optical fiber, producing a 34 000-fold increase in backscatter levels over Rayleigh. With such high backscatter levels, high repetition rate lasers are now sufficiently bright to allow near continuous field sensing in both space and time with field resolutions as low as 0.005 T and as high as 170 T over a similar to mm interval given available fiber materials. Published by AIP Publishing.
Journal article
Published 10/2016
IEEE transactions on plasma science, 44, 10, 1997 - 2012
The field-reversed configuration heating experiment (FRCHX) was designed to form closed-field-line magnetized target plasmas for magnetoinertial fusion and other high energy density plasma research. These plasmas are in a field-reversed configuration and are formed via a reversed-field theta pinch on an already magnetized background plasma. To extend the duration and temporal uniformity of the pinch, the capacitor bank driving the reversed-field discharge is crowbarred near the current peak. Four parallel rail-gap switches are used on the FRCHX for this application to ensure a low-inductance crowbar discharge path and to accommodate the large magnitude of the discharge current (often greater than 1 MA). Historically, parallel operation of spark gap switches in a crowbarring arrangement has often proved to be difficult due to the very low voltage present on the bank and across the switches at the time of peak current. In a low-inductance design, triggering can be further complicated by the rapid collapse of what little voltage there is across the switches as soon as the first spark gap begins conduction. This paper reports on the efforts that were made to develop a low-inductance crowbar switch for the FRCHX and to ultimately enable successful triggering and operation of the four parallel rail-gap switches used in the crowbar. The design of the low-inductance parallel switch assembly is presented first, followed by a description of the triggering scheme employed to ensure conduction of all four switches.