Variable magnetic field electron spectrometer to measure hot electrons in the range of 50–460 keV

Author:

Shpilman Z.12ORCID,Park J.2ORCID,Nedbailo R.2,Hollinger R.2ORCID,Wang S.2,Osovsky R.2,Afeyan B.3,Rocca J. J.24

Affiliation:

1. Plasma Physics Department, Soreq NRC 1 , Yavne 81800, Israel

2. Colorado State University 2 , Fort Collins, Colorado 80523, USA

3. Polymath Research, Inc. 3 , Pleasanton, California 94588, USA

4. Physics Department, Colorado State University 4 , Fort Collins, Colorado 80523, USA

Abstract

Resonance absorption (RA) occurs when a p-polarized electromagnetic wave, obliquely incident on an inhomogeneous plasma, tunnels past its turning point and resonantly excites an electron plasma wave (EPW) at the critical density. This phenomenon is important, for instance, in the direct drive approach to inertial fusion energy and is a particular example of a wider phenomenon in plasma physics known as mode conversion, which is crucial for heating magnetic fusion devices, such as tokamaks, via RF heating. Direct measurement of these RA-generated EPW accelerated hot electrons, with energy in the range of a few tens to a few hundreds of keV, is a challenging task due to the relatively low deflecting magnetic fields needed. The solution described here is a magnetic electron spectrometer (MES) with a continually changing magnetic field, lower at the entrance of the MES and gradually increasing toward the end, that enables the measurement of a wide spectral range of electrons with energies between 50 and 460 keV. Electron spectra taken in a LaserNetUS RA experiment were acquired from plasmas generated by irradiating polymer targets with the combination of an ∼300 ps pulse followed by a series of ten high intensity 50–200 fs duration laser pulses from the ALEPH laser at Colorado State University. The high intensity beam is designed as spike trains of uneven duration and delay pulses in order to modify the RA phenomenon.

Funder

Office of Defense Programs

U.S. Department of Energy

dod Vannevar Bush

Publisher

AIP Publishing

Subject

Instrumentation

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Ponderomotive acceleration with high energy tilted ultrafast laser pulses;Frontiers in Optics + Laser Science 2023 (FiO, LS);2023

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