Contents
2023
Volume: 35 Issue 7
23 Article(s)

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Molecular dynamics simulation of helium damage in copper
Penghui Yan, Baoling Zhang, Yongxing Shi, and Yiyi Ma
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 076001 (2023)
Advanced Interdisciplinary Science
Low-altitude UAV detection and tracking algorithms in complex backgrounds
Jianwei Wang, Jiang You, Min Wan, and Jingliang Gu
With the frequent appearance of UAVs in several recent local wars and armed conflicts, the study of UAV detection and tracking technology has become a research hotspot in imagery and other fields. Due to the characteristics of low altitude UAV targets such as large mobility, small size, low contrast and complex backgro
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 079001 (2023)
Muzzle voltage noise suppression and application for augmented electromagnetic railgun based on VMD-OptShrink
Jie Yan, Juxiang Li, Yi Chen, Yi Wang, and Weisheng Ye
Utilizing the muzzle voltage of the electromagnetic railgun, the contact resistance between the sliding armature and the copper rail surface during the launch process can be calculated to analyze the contact characteristics. However, the muzzle voltage signal contains a large amplitude of reverse induced electromotive
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 079002 (2023)
Cover and Contents
[in Chinese]
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 1 (2023)
High Power Laser Physics and Technology
100 kHz high power high beam quality nanosecond laser oscillator
Tianli Yang, Jing Yang, Wangzhe Zhou, Xuepeng Li, Xiaojun Wang, and Qinjun Peng
Nanosecond (ns) pulsed laser with high average power and high repetition rate is a potential solution for laser cutting, laser welding and many other processing applications. With the increase of pulse repetition rate, especially when it is higher than 50 kHz, it is difficult to accumulate enough upper state population
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 071006 (2023)
Development of 2.94 μm room temperature CW Er:YAG laser technology
Zhengyi Liu, Xianlin Ye, Song Zhang, Xingbin Wei, Huaijin Ren, and Weimin Wang
In this paper, we report a simple structure, room-temperature operation, LD end-pumped 2.94 μm Er:YAG continuous wave laser. The laser uses double-ended bonded YAG end caps to reduce the end-surface temperature of the crystal. The pump source uses a small core diameter output fiber and an aspheric mirror coupling syste
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 071007 (2023)
High Power Laser Physics and Technology·Overview
Recent progress of high power green laser based on frequency doubling technology for fiber laser
Tian Ma, Fuquan Li, and Honghuan Lin
The green laser can be used for the processing of highly reflective metals such as copper. Compared with the 1 μm laser which is broadly used now, green laser has the absorption efficiency nearly an order of magnitude higher, which can better meet the needs of various fields for the precision processing of highly refle
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 071005 (2023)
High Power Microwave Technology
Design and experiment of ultra-wideband combined antenna for high-power microwave
Hao Wu, Jin Qu, Shitao Chen, Chuan Yu, Liang Liu, and Xiaoyan Shi
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 073001 (2023)
Preliminary design of reverse permanent magnet guidance system for E-type waveguide oscillator
Caiping Zeng, Yuzhe Xue, Chuangzhou Du, Lei Yin, Che Xu, and Qingxiang Liu
The theoretical analysis and simulation on the permanent magnet guidance system of the E-type waveguide oscillator are developed. Firstly, the theoretical analysis of the modified paraxial ray equation, the minimum magnetic field under relativistic conditions and the transmission conditions of an intense relativistic e
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 073002 (2023)
Inertial Confinement Fusion Physics and Technology
CUP-VISAR image reconstruction based on low-rank prior and total-variation regularization
Kaitao Zheng, Haiyan Li, Huaquan Gan, Yunbao Huang, Yulong Li, Longfei Jing, Zanyang Guan, Qingxin Huang, and Yuanping Yu
To solve the problem of reconstructing two-dimensional shock wave fringe from compressed image obtained from Compressed Ultrafast Photography (CUP) and two-dimensional Velocity Interferometer System for Any Reflector (VISAR), a compressed image reconstruction algorithm based on low-rank constraint and total-variation r
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 072002 (2023)
Laser Damage of Optical Elements
Investigating surface damage characteristics in DKDP crystals by laser irradiation at 355 nm and 1064 nm
Jinfang Shi, Rong Qiu, Decheng Guo, Lei Zhou, Yong Jiang, Qiang Zhou, Jian Yu, Yuanpan Chen, and Zhun Xie
The surface damage characteristics in DKDP crystals under laser irradiation at 355 nm and 1064 nm were studied and compared by using a Nd: YAG laser. The damage precursors and mechanisms corresponding to each damage morphologies were analyzed. The damage results reveal that the surface damage in DKDP crystal is more co
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 071003 (2023)
A theoretical study on intense laser induced damage of monocrystalline silicon by absorption front model
Biyi Wang, Wanli Zhao, Xia Xiang, Xiaodong Yuan, Xiaotao Zu, Wanguo Zheng, and Hongxiang Deng
The absorption front model for laser induced damage of optical materials is modified. Different from the original model, the impurity defect absorption term is introduced, and the one-dimensional model is extended to a three-dimensional model. Using the modified absorption front model, temperature distribution near imp
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 071004 (2023)
Laser Damage of Optical Elements·Overview
Laser damage of KDP crystals and their analogues
Yuanan Zhao, Yafei Lian, Ting Li, Xiaocong Peng, Yueliang Wang, Jinming Wu, Junxiu Chang, Guohang Hu, and Jianda Shao
KDP-family crystals are the only nonlinear optical crystal material according with the optical aperture of ICF laser drivers. As KDP-family crystals are grown by aqueous solution method, the macroscopic inclusions and microscopic lattice defects easily occur in the bulk of the crystals. The high density pinpoints damag
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 071001 (2023)
Review on laser damage fatigue effects of fused silica and other optical materials
Jingguo Zhu, Ye Tian, Ying Yang, Xin Zhang, Shengheng Zheng, De’en Wang, and Wei Han
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 071002 (2023)
Nuclear Science and Engineering
Analysis on radiological consequence in fuel handling accident for advanced small reactor based on ARCON methodology
Shaowei Wang, Yichuan Wang, Jianye Gong, Haiying Chen, Wei Li, and Qiaofeng Liu
The accident source term and radiological consequence evaluation of small heating reactor at site boundary is the key content of nuclear and radiation safety review. According to the design characteristics of the advanced small reactor, the accident source term calculation model is established for fuel handling acciden
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 076002 (2023)
Preliminary study of lead-bismuth reactor system analysis code development
Yong Luo, Qiwen Pan, Shangdong Yang, and Zhixing Gu
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 076003 (2023)
Particle Beams and Accelerator Technology
Simulation studies on the field flatness tuning of multi-cell superconducting radio-frequency cavities
Yan Wang, Zhenyu Ma, Kai Xu, Qiang Chang, Zhigang Zhang, Chen Luo, Xuefang Huang, Xiang Zheng, Shenjie Zhao, and Yubin Zhao
Perturbation theory of multi-cell superconducting radio-frequency (SRF) cavities, which is widely used in analysis of field flatness adjustment, is briefly described, and theoretical calculation method of field flatness is deduced. Multi-field coupled simulation calculations are performed for resonant cavities with min
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 074001 (2023)
Pulsed Power Technology
Design of a high voltage isolated bipolar sampling circuit with high robustness
Bo Li, Xun Ma, Juan Zhao, Hongtao Li, Xin Zhang, Longfei Kang, Chuanhui Kang, Songjie Li, and Jinshui Xiao
According to the requirements of high robustness and positive and negative polarity controllability of the sampling circuit for bipolar charging power supply designed for a large capacity energy storage device, a positive and negative bipolar DC high-voltage isolation sampling circuit with isolation voltage ≥ 30 kV and
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 075002 (2023)
Design and experimental study of two types of low jitter self-triggered switches under nanosecond pulse voltage
Guangxi Cui, Junna Li, Haiyang Wang, Xuliang Chen, Yongliang Wang, Jian Liu, Chunan Li, Qisheng Li, and Ling Shi
It is important to reduce the jitter of gas switch under nanosecond pulse voltage for the output stability of electromagnetic pulse simulator. Especially under the condition that external triggering is inconvenient, the reduction of the jitter of self-triggered switch is worth paying attention to. In this paper, two ty
High Power Laser and Particle Beams
  • Publication Date: Jul. 15, 2023
  • Vol. 35, Issue 7, 075003 (2023)