Acta Photonica Sinica, Volume. 54, Issue 5, 0532002(2025)
Design of a High-precision and Low-jitter Synchronization System for X-ray Framing Cameras
[1] MOSES E I, COLLABORATORS N I C. The national ignition campaign: status and progress[J]. Nuclear Fusion, 53, 104020(2013).
[2] YAMANAKA C. Inertial confinement fusion: the quest for ignition and energy gain using indirect drive[J]. Nuclear Fusion, 39, 825(1999).
[3] ANANTHANARAYAN B. Annual review of nuclear and particle science, 2015[J]. Current Science, 111, 1407-1409(2016).
[4] CHEN Huan, BAI Yanli, LI Heng et al. Analysis of optimal spatial resolution capability of pulse-dilation framing camera[J]. Laser & Optoelectronics Progress, 61, 0811010(2024).
[5] ZYLSTRA A B, HURRICANE O A, CALLAHAN D A et al. Burning plasma achieved in inertial fusion[J]. Nature, 601, 542-548(2022).
[6] LIU Hui, LIU Baiyu, BAI Yonglin et al. Design of arbitrary waveform generator for shaping high power laser system[J]. Chinese Journal of Optics, 4, 60-65(2011).
[7] CAO Zhurong, WANG Qiangqiang, DENG Bo et al. Progress of X-ray high-speed photography technology used in laser driven inertial confinement fusion[J]. High Power Laser and Particle Beams, 32, 53-65(2020).
[8] TIAN Jinshou. Introduction to development of streak and framing cameras[J]. High Power Laser and Particle Beams, 32, 36-52(2020).
[9] WANG Feng, ZHANG Xing, LI Yulong et al. Progress in high time-and space-resolving diagnostic technique for laser-driven inertial confinement fusion[J]. High Power Laser and Particle Beams, 32, 20-35(2020).
[10] HILSABECK T J, NAGEL S R, HARES J D et al. Picosecond imaging of inertial confinement fusion plasmas using electron pulse-dilation[C], 10328, 153-158(2017).
[11] CAI Houzhi, LIU Jinyuan, FU Wenyong et al. Gated framing camera with three channels and its trigger jitter measurement[J]. Acta Optica Sinica, 38, 0204001(2018).
[12] JIANG Xiaoguo, WANG Yuan, JIN Guang et al. Three-frame framing camera with ultra high-speed and high performance[J]. Acta Photonica Sinica, 42, 1065-1070(2013).
[13] HU Junyu, PEI Chengquan, TIAN Jinshou et al. Design and experimental study of ICCD gated pulse source[J]. Acta Photonica Sinica, 47, 0911001(2018).
[14] CAI H Z, LUO Q Y, LIN K X et al. Ultrafast pulse-dilation framing camera and its application for time-resolved X-ray diagnostic[J]. Nuclear Science and Techniques, 35, 101-114(2024).
[15] LIU K, HU Q, QIU J et al. Dielectric barrier discharge at nanosecond high voltage pulses[C], 418-422(2006).
[16] NAGEL S R, CARPENTER A C, PARK J et al. The dilation aided single-line-of-sight X-ray camera for the national ignition facility: characterization and fielding[J]. Review of Scientific Instruments, 89, 10G125(2018).
[17] HILSABECK T J, HARES J D, KILKENNY J D et al. Pulse-dilation enhanced gated optical imager with 5 ps resolution (invited)[J]. Review of Scientific Instruments, 81, 10E317(2010).
[18] CAI H Z, FU W Y, WANG D et al. Dilation x-ray framing camera and its temporal resolution uniformity[J]. Optics Express, 27, 2817-2827(2019).
[19] CHI Chen, WU Wei, FANG Shengjiang et al. Development of a high-precision and low-jitter pulse delay generator[J]. Optoelectronic Technology, 40, 108-113(2020).
[20] LIANG Dongfei, SU Shujing, LIANG Wenke et al. A method for eliminating trigger jitter in a pulse delay generator[J]. Chinese Journal of Electron Devices, 45, 326-330(2022).
[21] WANAG Chong, HAN Jianghao, ZHU Bingli et al. Design of high-resolution digital pulse delay generator with small shaking[J]. Power Electronics, 57, 40-43,59(2023).
[22] LI Zhiyong, FU Shaobo, SUN Yu et al. Design of high-precision ultrashort time interval measurement module[J]. Journal of Hebei University of Technology, 38, 62-65(2009).
[23] GENG Zhenhua, Yuanwei JIU, WANG Yu et al. Design of a high precision drive circuit with adjustable output and constant current[J]. Spacecraft Recovery & Remote Sensing, 41, 86-92(2020).
[24] YUAN Yidan, LUO Qian, HE Jiangping et al. Design of a high-speed high-precision constant current output driver circuit[J]. Microelectronics & Computer, 37, 75-78, 86(2020).
[25] CUI K, LI X Y, ZHU R H. A high-resolution programmable Vernier delay generator based on carry chains in FPGA[J]. Review of Scientific Instruments, 88, 064703(2017).
[26] DAI Qingda, YE Mao. Design of double-chain three-route time-to-digital converter based on FPGA[J]. Journal of Beijing University of Posts and Telecommunications, 43, 88-94(2020).
[27] PAN W B, GONG G H, LI J M. A 20-ps time-to-digital converter (TDC) implemented in field-programmable gate array (FPGA) with automatic temperature correction[J]. IEEE Transactions on Nuclear Science, 61, 1468-1473(2014).
[28] ZHANG M, WANG H, LIU Y. Digital-to-time converter with 3.93 ps resolution implemented on FPGA chips[J]. IEEE Access, 5, 6842-6848(2017).
Get Citation
Copy Citation Text
Sen ZHAO, Yongsheng GOU, Yang YANG, Zhen CHEN, Bo WANG, Penghui FENG, Yan XU, Jinshou TIAN, Baiyu LIU. Design of a High-precision and Low-jitter Synchronization System for X-ray Framing Cameras[J]. Acta Photonica Sinica, 2025, 54(5): 0532002
Category: Ultrafast Optics
Received: Nov. 8, 2024
Accepted: Jan. 7, 2025
Published Online: Jun. 18, 2025
The Author Email: Yongsheng GOU (yshgou@163.com)