Compact high repetition rate Thomson parabola ion spectrometer

Author:

Nedbailo R.1ORCID,Park J.1ORCID,Hollinger R.1ORCID,Wang S.1,Mariscal D.2ORCID,Morrison J.1,Song H.1ORCID,Zeraouli G.12ORCID,Scott G. G.2ORCID,Ma T.2ORCID,Rocca J. J.13

Affiliation:

1. Electrical and Computer Engineering Department, Colorado State University 1 , Fort Collins, Colorado 80523, USA

2. Lawrence Livermore National Laboratory 2 , Livermore, California 94550, USA

3. Physics Department, Colorado State University 3 , Fort Collins, Colorado 80523, USA

Abstract

We present the development of a compact Thomson parabola ion spectrometer capable of characterizing the energy spectra of various ion species of multi-MeV ion beams from >1020W/cm2 laser produced plasmas at rates commensurate with the highest available from any of the current and near-future PW-class laser facilities. This diagnostic makes use of a polyvinyl toluene based fast plastic scintillator (EJ-260), and the emitted light is collected using an optical imaging system coupled to a thermoelectrically cooled scientific complementary metal–oxide–semiconductor camera. This offers a robust solution for data acquisition at a high repetition rate, while avoiding the added complications and nonlinearities of micro-channel plate based systems. Different ion energy ranges can be probed using a modular magnet setup, a variable electric field, and a varying drift-distance. We have demonstrated operation and data collection with this system at up to 0.2 Hz from plasmas created by irradiating a solid target, limited only by the targeting system. With the appropriate software, on-the-fly ion spectral analysis will be possible, enabling real-time experimental control at multi-Hz repetition rates.

Funder

U.S. Department of Energy

DOD Vannevar Bush Faculty Fellowship ONR

U.S. Department of Energy, LaserNet US

Publisher

AIP Publishing

Subject

Instrumentation

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