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Impact of x-ray dose on track formation and data analysis for CR-39-based proton diagnostics.

Authors :
Rinderknecht HG
Rojas-Herrera J
Zylstra AB
Frenje JA
Gatu Johnson M
Sio H
Sinenian N
Rosenberg MJ
Li CK
Séguin FH
Petrasso RD
Filkins T
Steidle JA
Steidle JA
Traynor N
Freeman C
Source :
The Review of scientific instruments [Rev Sci Instrum] 2015 Dec; Vol. 86 (12), pp. 123511.
Publication Year :
2015

Abstract

The nuclear track detector CR-39 is used extensively for charged particle diagnosis, in particular proton spectroscopy, at inertial confinement fusion facilities. These detectors can absorb x-ray doses from the experiments in the order of 1-100 Gy, the effects of which are not accounted for in the previous detector calibrations. X-ray dose absorbed in the CR-39 has previously been shown to affect the track size of alpha particles in the detector, primarily due to a measured reduction in the material bulk etch rate [Rojas-Herrera et al., Rev. Sci. Instrum. 86, 033501 (2015)]. Similar to the previous findings for alpha particles, protons with energies in the range 0.5-9.1 MeV are shown to produce tracks that are systematically smaller as a function of the absorbed x-ray dose in the CR-39. The reduction of track size due to x-ray dose is found to diminish with time between exposure and etching if the CR-39 is stored at ambient temperature, and complete recovery is observed after two weeks. The impact of this effect on the analysis of data from existing CR-39-based proton diagnostics on OMEGA and the National Ignition Facility is evaluated and best practices are proposed for cases in which the effect of x rays is significant.

Details

Language :
English
ISSN :
1089-7623
Volume :
86
Issue :
12
Database :
MEDLINE
Journal :
The Review of scientific instruments
Publication Type :
Academic Journal
Accession number :
26724031
Full Text :
https://doi.org/10.1063/1.4938161