Published 2001 | Version v1
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Diagnostics and equipment for ion temperatures and implosion neutron yields

  • 1. China Academy of Engineering Physics, Mianyang (China). Centre of Laser Fusion Research

Description

Fuel ion temperature is of great importance in the ICF research field. A set of ultra-fast quenched plastic scintillation detector system was fabricated for low yield neutron diagnostic. The detection efficiency and the sensitivity to DT neutrons were scaled using a K-400 accelerator and a pulse neutron tube from Russia with a width 5 - 10 ns, respectively. Its time response functions were calibrated by cosmic ray and implosion neutron separately. Under the conditions of low laser energy so low neutron yield and very limited space, fuel ion temperatures (including implosion neutron yields at the same time) were obtained. The measured ion temperatures for exploding pusher capsules were between 4 keV and 5 keV with errors +-(15 - 25)%. The neutron yields were 5 x 108 - 3 x 109 for exploding pusher capsules and 1.6 x 107 - 3.9 x 108 for ablation ones with errors +- (7 - 10)%. Of the six shots of neutron yields calculated, five are in good agreement with authors' experimental results in the range of +- 20%. Not only the heat-conducting mechanism and the effects on implosion of the energy balance of each path of incidence laser, target design, fuel mixture as well as hot electron behavior have been investigated, but also the upgrade level of the laser facility Shengguang II has been tested

Availability note (English)

Available from INIS in electronic form

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Additional details

Publishing Information

ISBN
7-89998-074-7
Imprint Pagination
20 p.
Series
China Nuclear Science and Technology Report
Report number
CNIC--01596

Optional Information

Notes
Data in PDF format: Acrobat Reader for Windows 9x; CNIC/CD/2001-4; 10 figs., 5 tabs., 15 refs.
Secondary number(s)
CAEP--0090