• High Power Laser and Particle Beams
  • Vol. 32, Issue 11, 112004 (2020)
Zhurong Cao1, Qiangqiang Wang1, Bo Deng1, Tao Chen1, Keli Deng1, Weirong Wang2, Xingyu Peng3, Zhongjing Chen1, Zheng Yuan1, Yukun Li1, Peng Wang1, Bolun Chen1, Feng Wang1, Haien He1, Xingzhu Li2, Zeping Xu3, Dong Yang1, Jiamin Yang1, Shaoen Jiang1, Yongkun Ding4, and Weiyan Zhang5
Author Affiliations
  • 1Laser Fusion Research Center, CAEP, Mianyang 621900, China
  • 2Institute of Fluid Physics, CAEP, Mianyang 621900, China
  • 3Institute of Nuclear Physics and Chemistry, CAEP, Mianyang 621900, China
  • 4Institute of Applied Physics and Computational Mathematics, Beijing, 100094, China
  • 5China Academy of Engineering Physics, Mianyang 621900, China
  • show less
    DOI: 10.11884/HPLPB202032.200099 Cite this Article
    Zhurong Cao, Qiangqiang Wang, Bo Deng, Tao Chen, Keli Deng, Weirong Wang, Xingyu Peng, Zhongjing Chen, Zheng Yuan, Yukun Li, Peng Wang, Bolun Chen, Feng Wang, Haien He, Xingzhu Li, Zeping Xu, Dong Yang, Jiamin Yang, Shaoen Jiang, Yongkun Ding, Weiyan Zhang. Progress of X-ray high-speed photography technology used in laser driven inertial confinement fusion[J]. High Power Laser and Particle Beams, 2020, 32(11): 112004 Copy Citation Text show less
    References

    [1] Keefe D. Inertial confinement fusion[J]. Annual Review of Nuclear and Particle Science, 32, 391-441(2003).

    [2] Yamanaka C. Inertial confinement fusion[J]. Physica Scripta, 1982, 486(2007).

    [3] Yamanaka C. Inertial confinement fusion: The quest for ignition and energy gain using indirect drive[J]. Nuclear Fusion, 39, 825(2002).

    [6] Moses E I. The National Ignition Campaign: status and progress[J]. Nuclear Fusion, 53, 104020(2013).

    [10] Pak A, Dewald E, Milovich J, et al. Tuning the earlytime radiation flux symmetry in indirect drive implosion experiments at the National Ignition Facility[C]55th Annual Meeting of the APS Division of Plasma Physics. 2013.

    [12] Benedetti L B, Nagel S R, Izumi N, et al. Quantitative analysis of Xray self emission in ICF implosions using thogonal images[C]58th Annual Meeting of APS Division of Plasma Physics. 2016.

    [14] Gotchev O V, Jaanimagi P A, Knauer J P. High-throughput, high-resolution Kirkpatrick-Baez microscope for advanced streaked imaging of ICF experiments on Omega[J]. Review of Scientific Instruments, 74, 2178-2181(2003).

    [16] Xie Qing, Mu Baozhong, Li Yaran, et al. Design of KB complex type microscope f ICF Xray diagnostics[C]Proc of SPIE. 2016: 99630X.

    [17] Pickwth L, Bradley D, Pardini T, et al. A KirkpatrickBaez microscope f ce implosion imaging at NIF[C]APS Meeting. 2013.

    [18] Yi Shengzhen, Mu Baozhong, Wang Xin. A four-channel multilayer KB microscope for high-resolution 8-keV X-ray imaging in laser-plasma diagnostics[J]. Chinese Optics Letters, 12, 013401(2014).

    [19] Yi Shengzhen, Zhang Zhe, Huang Qiushi. Eight-channel Kirkpatrick-Baez microscope for multiframe X-ray imaging diagnostics in laser plasma experiments[J]. Review of Scientific Instruments, 87, 103501(2016).

    [20] Troussel P, Munsch P, Ferme J. Microfocusing between 1 5 keV with Woltertype optics[C]Proc of SPIE. 1999, 3773: 6069.

    [22] McCarville T, Fulkerson S, Booth R. Gated X-ray intensifier for large format simultaneous imaging[J]. Review of Scientific Instruments, 76, 103501(2005).

    [24] Nagel S R, Hilsabeck T J, Bell P M. Dilation X-ray imager a new/faster gated X-ray imager for the NIF[J]. Review of Scientific Instruments, 83, 10E116(2012).

    [25] Nagel S R, Ayers M J, Felker B, et al. Perfmance measurements of the DIXI (dilation Xray imager) photocathode using a laser produced Xray source[C] Proc of SPIE. 2012: 85050H.

    [26] Nagel S R, Hilsabeck T J, Bell P M. Investigating high speed phenomena in laser plasma interactions using dilation X-ray imager[J]. Review of Scientific Instruments, 85, 11E504(2014).

    [27] Bai Yanli, Long Jinghua, Liu Jinyuan. Demonstration of 11-ps exposure time of a framing camera using pulse-dilation technology and a magnetic lens[J]. Optical Engineering, 54, 124103(2015).

    [28] Cai Houzhi, Fu Wenyong, Bai Yanli. Simulation of a dilation X-ray framing camera[J]. Journal of Electron Imaging, 26, 043003(2017).

    [29] Yi S, Assoufid L, Takacs P, et al. Largefield highenergy KB microscope with a periodic multilayer[C]Proc of SPIE. 2010: 78010C.

    [31] Hagmann C, Izumi N, Bell P. Modeling of neutron induced backgrounds in X-ray framing cameras[J]. Review of Scientific Instruments, 81, 10E514(2010).

    [32] Izumi N, Hagmann C, Stone G. Experimental study of neutron-induced background noise on gated X-ray framing cameras[J]. Review of Scientific Instruments, 81, 10E515(2010).

    [33] Jaanimagi P, Boni R, Keck R. Neutron-induced background in charge-coupled device detectors[J]. Review of Scientific Instruments, 72, 801-804(2001).

    [34] Khan S, Bell P, Bradley D, et al. Measuring Xray burn histy with the Streaked Polar Instrumentation f Diagnosing Energetic Radiation (SPIDER) at the National Ignition Facility (NIF)[C]Proc of SPIE. 2012: 850505.

    [35] Rymell L, Hertz H. Debris elimination in a droplet-target laser-plasma soft X-ray source[J]. Review of Scientific Instruments, 66, 4916(1995).

    [36] Tobin M, rew J, Eder D, et al. acterizing shrapnel debris produced in high power laser experiments[C]The 3rd International Conference on Inertial Fusion Sciences Applications. 2003.

    [37] Miller M C, Celeste J, Stoyer M A. Debris characterization diagnostic for the NIF[J]. Review of Scientific Instruments, 72, 537-539(2001).

    [38] Eder D, Koniges A, Landen O. Debris and shrapnel mitigation procedure for NIF experiments[J]. Journal of Physics Conference, 112, 032023(2008).

    [39] Eder D, Koniges A, Bonneau F, et al. Simulation of shrapnel to aid in the design of NIFLMJ targetdiagnostic configurations[C]The 3rd International Conference on Inertial Fusion Sciences Applications. 2003.

    [40] Trosseille C, Aubert D, Auger L. Overview of the ARGOS X-ray framing camera for Laser Megajoule[J]. Review of Scientific Instruments, 85, 11D620(2014).

    [41] Oertel J, Aragonez R, Archuleta T. Gated X-ray detector for the National Ignition Facility[J]. Review of Scientific Instruments, 77, 10E308(2006).

    [42] Kimbrough J R, Bell P M, Bradley D K. Standard design for National Ignition Facility X-ray streak and framing cameras[J]. Review of Scientific Instruments, 81, 10E530(2010).

    [43] Kimbrough J R, Bell P M, Christianson G B. National Ignition Facility core X-ray streak camera[J]. Review of Scientific Instruments, 72, 748-750(2001).

    [46] Wang Qiangqiang, Deng Bo, Cao Zhurong. Development of a gated X-ray imager with multiple views and spectral selectivity for observing plasma evolution in hohlraum[J]. Review of Scientific Instruments, 90, 073301(2019).

    [48] Yang Wenzheng, Bai Yonglin, Liu Baiyu. Temporal resolution technology of a soft X-ray picosecond framing camera based on Chevron micro-channel plates gated in cascade[J]. Nuclear Instruments and Methods in Physics Research Section A, 608, 291-296(2009).

    [49] Cao Zhurong, Jin Fengtao, Dong Jianjun. Soft X-ray low-pass filter with a square-pore microchannel plate[J]. Optics Letter, 38, 1509-1511(2013).

    [52] Ayers M J, Nagel S R, Felker B, et al. Design implementation of Dilation Xray Imager f NIF “DIXI”[C]Proc of SPIE.2013: 88500C.

    [53] Carpenter A C, Dayton M, Kimbrough J, et al. Single line of sight CMOS radiation tolerant camera system design overview[C] Proc of SPIE. 2016: 99660H.

    [54] Engelhorn K, Hilsabeck T J, Kilkenny J. Sub-nanosecond single line-of-sight (SLOS) X-ray imagers (invited)[J]. Review of Scientific Instruments, 89, 10G117(2018).

    [55] Nagel S R, Carpenter A C, Park J. The dilation aided single-line-of-sight X-ray framing camera for the National Ignition Facility: Characterization and fielding[J]. Review of Scientific Instruments, 89, 10G125(2018).

    Zhurong Cao, Qiangqiang Wang, Bo Deng, Tao Chen, Keli Deng, Weirong Wang, Xingyu Peng, Zhongjing Chen, Zheng Yuan, Yukun Li, Peng Wang, Bolun Chen, Feng Wang, Haien He, Xingzhu Li, Zeping Xu, Dong Yang, Jiamin Yang, Shaoen Jiang, Yongkun Ding, Weiyan Zhang. Progress of X-ray high-speed photography technology used in laser driven inertial confinement fusion[J]. High Power Laser and Particle Beams, 2020, 32(11): 112004
    Download Citation