Cite this article:
Teng Jian, Zhang Tian-Kui, Wu Bo, Pu Yu-Dong, Hong Wei, Shan Lian-Qiang, Zhu Bin, He Wei-Hua, Lu Feng, Wen Xian-Lun, Zhou Wei-Min, Cao Lei-Feng, Jiang Shao-En, Gu Yu-Qiu. DD proton spectrum for diagnosing the areal density of imploded capsules on Shenguang Ⅲ prototype laser facilityJ. Chin. Phys. B, 2014, 23(7): 075207.
| Teng Jian, Zhang Tian-Kui, Wu Bo, Pu Yu-Dong, Hong Wei, Shan Lian-Qiang, Zhu Bin, He Wei-Hua, Lu Feng, Wen Xian-Lun, Zhou Wei-Min, Cao Lei-Feng, Jiang Shao-En, Gu Yu-Qiu. DD proton spectrum for diagnosing the areal density of imploded capsules on Shenguang Ⅲ prototype laser facilityJ. Chin. Phys. B, 2014, 23(7): 075207. |
DD proton spectrum for diagnosing the areal density of imploded capsules on Shenguang Ⅲ prototype laser facility
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Abstract
The primary DD proton spectrum is used for diagnosing the fuel-shell areal density ρR of imploded capsules on Shenguang Ⅲ (SG-Ⅲ) prototype laser facility for the first time. A charged particle spectrometer (CPS) with a CR39 nuclear track detector is used to measure the DD proton spectrum. The proton spectrum is determined from both the proton track and its size. A typical proton energy peak shift from 3.02 MeV to 2.6 MeV is observed in our experiment, which yields a maximum ρR larger than 6 mg/cm2. -
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