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Preliminary diagnosis of areal density in the deuterium fuel capsule by proton measurement at SG-III facility
- Source :
- SPIE Proceedings.
- Publication Year :
- 2017
- Publisher :
- SPIE, 2017.
-
Abstract
- Areal density (ρR) is one of the crucial parameters in the inertial confinement fusion. Measurement of the fusion products is a more feasible method to diagnose ρR than other methods, such as X-ray. In the capsules filled with D 2 fuel or D- 3 He fuel, proton is an ideal probe to diagnose the implosion ρR in different emission times and directions by measurements of the proton yields and spectra. By D-D reaction protons and D- 3 He reaction protons, the diagnostics of the total and fuel ρR, ρR evolution, implosion asymmetry and mix effect have been demonstrated at OMEGA and NIF facilities. Also some advanced proton diagnostics instruments are developed with a high level capability. Preliminary diagnosis of ρR in the deuterium involved fuel capsules by measurement of protons at SG-III facility was implemented. A fusion product emission and transport code by Monte-Carlo method was developed. The primary and secondary protons emission and transport in the fuel and shell plasmas were able to be simulated. The relations of the proton energy loss and the secondary proton yields with the areal density were inspected. Several proton spectrometers have been built up at SG-III facility, such as a step ranged filter (SRF) proton spectrometer and a wedged range filter (WRF) proton spectrometer. Some proton response simulation codes and the codes for proton spectra reconstruction were also developed. The demonstrations of ρR diagnostics at SG-III facility by D-D reaction and D- 3 He reaction proton spectra measurements are presented.
- Subjects :
- Range (particle radiation)
Proton
Spectrometer
Chemistry
Nuclear Theory
Analytical chemistry
Implosion
01 natural sciences
010305 fluids & plasmas
Nuclear physics
Deuterium
0103 physical sciences
Physics::Accelerator Physics
Area density
Nuclear Experiment
010306 general physics
National Ignition Facility
Inertial confinement fusion
Subjects
Details
- ISSN :
- 0277786X
- Database :
- OpenAIRE
- Journal :
- SPIE Proceedings
- Accession number :
- edsair.doi...........939b8ed37a42dc16d2205f637a67d14c
- Full Text :
- https://doi.org/10.1117/12.2268340