氘
离子
融合
发电机(电路理论)
等离子体
掐
惯性约束聚变
Z箍缩
核物理学
原子物理学
物理
材料科学
光学
功率(物理)
哲学
语言学
量子力学
作者
V. Munzar,G. V. Dowhan,D. Klír,J. Novotný,K. Řezáč,Joe Chen,J. Cikhardt,B. Cikhardtová,V. Juras,Nicholas Jordan,P. Kubeš,J. Malir,L. Tafoya,K. Turek,R. D. McBride
标识
DOI:10.1088/1361-6587/ad5104
摘要
Abstract We report on the results of point-projection ion deflectometry measurements from a mid-size university z-pinch experiment. A 1 MA 8 kJ LTD generator at the University of Michigan (called MAIZE) drove a hybrid x-pinch (HXP) with a deuterated polyethylene fiber load to produce a point-like source of MeV ions for backlighting. In these experiments, 2.7 MeV protons were generated by DD beam-target fusion reactions. Due to the kinematics of beam-target fusion, the proton energies were down-shifted from the more standard 3.02 MeV proton energy that is released from the center-of-mass rest frame of a DD reaction. In addition to the 2.7 MeV protons, strongly anisotropic beams of 3 MeV accelerated deuterons were detected by ion diagnostics placed at a radial distance of 90 mm from the x-pinch. Numerical reconstruction of experimental data generated by deflected hydrogen ion trajectories evaluated the total current in the vacuum load region. Numerical ion-tracking simulations show that accelerated deuteron beams exited the ion source region at large angles with respect to the pinch current direction.
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