Output list
1–10 of 18 results
Journal article
Formation of a spherical plasma liner for plasma-jet-driven magneto-inertial fusion
Published 09/01/2024
Physics of plasmas, 31, 10, 102701
Plasma-jet-driven magneto-inertial fusion is an alternative approach to controlled nuclear fusion, which aims to utilize a line-replaceable dense plasma liner as a repetitive spherical compression driver. In this experiment, first measurements of the formation of a spherical argon plasma liner formed from 36 discrete pulsed plasma jets are obtained on the Plasma Liner Experiment. Properties including liner uniformity and morphology, plasma density, temperature, and ram pressure are assessed as a function of time throughout the implosion process and indicate an apparent transition from initial kinetic inter-jet interpenetration to collisional regime near stagnation times, in accordance with theoretical expectation. A lack of primary shock structures between adjacent jets during flight implies that arbitrarily smooth liners may be formed by way of corresponding improvements in jet parameters and control. The measurements facilitate the benchmarking of computational models and understanding the scaling of plasma liners toward fusion-relevant energy density.
Journal article
Published 07/01/2024
Review of scientific instruments, 95, 7, 073520
This paper introduces a novel approach for automated high-throughput estimation of plasma temperature and density using atomic emission spectroscopy, integrating Bayesian inference with sophisticated physical models. We provide an in-depth examination of Bayesian methods applied to the complexities of plasma diagnostics, supported by a robust framework of physical and measurement models. Our methodology is demonstrated using experimental observations in the field of magneto-inertial fusion, focusing on individual and sequential shot analyses of the Plasma Liner Experiment at LANL. The results demonstrate the effectiveness of our approach in enhancing the accuracy and reliability of plasma parameter estimation and in using the analysis to reveal the deep hidden structure in the data. This study not only offers a new perspective of plasma analysis but also paves the way for further research and applications in nuclear instrumentation and related domains.
Journal article
Published 12/01/2023
Physics of Plasmas, 30, 12, 122110
Journal article
Multi-camera imaging to characterize jet and liner uniformity on the Plasma Liner Experiment (PLX)
Published 06/01/2023
Review of Scientific Instruments, 94, 6, 063503
Journal article
An investigation of shock formation vs shock mitigation of colliding plasma jets
First online publication 05/23/2023
Physics of Plasmas, 30, 5, 053903
Journal article
Published 04/07/2023
Physical Review Letters, 130, 14, 145101
Journal article
Published 03/01/2023
Review of scientific instruments, 94, 3, 031102
The Z machine is a current driver producing up to 30 MA in 100 ns that utilizes a wide range of diagnostics to assess accelerator performance and target behavior conduct experiments that use the Z target as a source of radiation or high pressures. We review the existing suite of diagnostic systems, including their locations and primary configurations. The diagnostics are grouped in the following categories: pulsed power diagnostics, x-ray power and energy, x-ray spectroscopy, x-ray imaging (including backlighting, power flow, and velocimetry), and nuclear detectors (including neutron activation). We will also briefly summarize the primary imaging detectors we use at Z: image plates, x-ray and visible film, microchannel plates, and the ultrafast x-ray imager. The Z shot produces a harsh environment that interferes with diagnostic operation and data retrieval. We term these detrimental processes "threats" of which only partial quantifications and precise sources are known. We summarize the threats and describe techniques utilized in many of the systems to reduce noise and backgrounds.
Journal article
Particle-in-cell modeling of plasma jet merging in the large-Hall-parameter regime
Published 06/01/2022
Physics of plasmas, 29, 6, 062706
The merging process of magnetized plasma jets with parameters relevant to the plasma-jet-driven magneto-inertial fusion (PJMIF) design and the plasma liner experiment (PLX) is modeled by fully kinetic particle-in-cell (PIC) simulations in one and two spatial dimensions. The modified two-stream instability is identified to be the main mechanism responsible for stopping the plasma jets and preventing species interpenetration. The electron and ion Hall parameters of the merged plasma are greater than unity, and the plasma beta is close to unity, which is the desired characteristic of planned experiments at PLX. Our 2D PIC simulations validate the results of the radiation magneto-hydrodynamics code FLASH, which will be the primary tool for modeling various stages of future PJMIF experiments. Published under an exclusive license by AIP Publishing.
Journal article
Formation of transient high-β plasmas in a magnetized, weakly collisional regime
Published 02/2021
Journal of Plasma Physics, 87, 1, 905870102
Journal article
Published 06/18/2020
Physics of Plasmas, 27, 6, 062706