• High Power Laser and Particle Beams
  • Vol. 34, Issue 5, 052001 (2022)
Jian Teng, Zhigang Deng, Lianqiang Shan*, Jiaxing Wen, Zongqiang Yuan, Weiwu Wang, Tiankui Zhang, Chao Tian, Feng Zhang, Minghai Yu, Feng Lu, Wei Hong, Shukai He, Zhimeng Zhang, Wei Qi, Bo Cui, Qiuyue Xu, Lai Wei, Yingjie Li, Liqiong Xia, Xing Zhang, Yuchi Wu, Jingqin Su, Weimin Zhou*, and Yuqiu Gu
Author Affiliations
  • Science and Technology on Plasma Physics Laboratory, Laser Fusion Research Center, CAEP, Mianyang 621900, China
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    DOI: 10.11884/HPLPB202234.210497 Cite this Article
    Jian Teng, Zhigang Deng, Lianqiang Shan, Jiaxing Wen, Zongqiang Yuan, Weiwu Wang, Tiankui Zhang, Chao Tian, Feng Zhang, Minghai Yu, Feng Lu, Wei Hong, Shukai He, Zhimeng Zhang, Wei Qi, Bo Cui, Qiuyue Xu, Lai Wei, Yingjie Li, Liqiong Xia, Xing Zhang, Yuchi Wu, Jingqin Su, Weimin Zhou, Yuqiu Gu. Online diagnosis system for D3He proton in laser fusion implosion experiments[J]. High Power Laser and Particle Beams, 2022, 34(5): 052001 Copy Citation Text show less
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    [1] Zhou C D, Theobald W, Betti R, et al. High-ρR implosions for fast-ignition fuel assembly[J]. Physical Review Letters, 98, 025004(2007).

    [2] Delamater N D, Wilson D C, Kyrala G A, et al. Use of d-3He proton spectroscopy as a diagnostic of shell ρR in capsule implosion experiments with~0.2 NIF scale high temperature Hohlraums at Omega[J]. Review of Scientific Instruments, 79, 10E526(2008).

    [3] Frenje J A, Li C K, Séguin F H, et al. Diagnosing fuel ρR and ρR asymmetries in cryogenic deuterium-tritium implosions using charged-particle spectrometry at OMEGA[J]. Physics of Plasmas, 16, 042704(2009).

    [4] Goncharov V N, Sangster T C, Radha P B, et al. Performance of direct-drive cryogenic targets on OMEGA[J]. Physics of Plasmas, 15, 056310(2008).

    [5] Séguin F H, Li C K, Frenje J A, et al. Using secondary-proton spectra to study the compression and symmetry of deuterium-filled capsules at OMEGA[J]. Physics of Plasmas, 9, 2725-2737(2002).

    [6] Li C K, Séguin F H, Frenje J A, et al. Charged-particle probing of X-ray-driven inertial-fusion implosions[J]. Science, 327, 1231-1235(2010).

    [8] Huntington C M, Fiuza F, Ross J S, et al. Observation of magnetic field generation via the Weibel instability in interpenetrating plasma flows[J]. Nature Physics, 11, 173-176(2015).

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    [11] Séguin F H, Frenje J A, Li C K, et al. Spectrometry of charged particles from inertial-confinement-fusion plasmas[J]. Review of Scientific Instruments, 74, 975-995(2003).

    [12] Teng Jian, Zhang Tiankui, Wu Bo, et al. DD proton spectrum for diagnosing the areal density of imploded capsules on Shenguang III prototype laser facility[J]. Chinese Physics B, 23, 075207(2014).

    [13] Seguin F H, Sinenian N, Rosenberg M, et al. Advances in compact proton spectrometers for inertial-confinement fusion and plasma nuclear science[J]. Review of Scientific Instruments, 83, 10D908(2012).

    [14] Zhang Xing, Zheng Jianhua, Yan Ji, et al. The application of proton spectrometers at the SG-III facility for ICF implosion areal density diagnostics[J]. High Power Laser Science and Engineering, 3, e28(2015).

    Jian Teng, Zhigang Deng, Lianqiang Shan, Jiaxing Wen, Zongqiang Yuan, Weiwu Wang, Tiankui Zhang, Chao Tian, Feng Zhang, Minghai Yu, Feng Lu, Wei Hong, Shukai He, Zhimeng Zhang, Wei Qi, Bo Cui, Qiuyue Xu, Lai Wei, Yingjie Li, Liqiong Xia, Xing Zhang, Yuchi Wu, Jingqin Su, Weimin Zhou, Yuqiu Gu. Online diagnosis system for D3He proton in laser fusion implosion experiments[J]. High Power Laser and Particle Beams, 2022, 34(5): 052001
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