Author Affiliations
Abstract
Shanghai Institute of Laser Plasma, CAEP, Shanghai 201899, People’s Republic of China
The use of broadband laser technology is a novel approach for inhibiting processes related to laser plasma interactions (LPIs). In this study, several preliminary experiments into broadband-laser-driven LPIs are carried out using a newly established hundreds-of-joules broadband second-harmonic-generation laser facility. Through direct comparison with LPI results for a traditional narrowband laser, the actual LPI-suppression effect of the broadband laser is shown. The broadband laser had a clear suppressive effect on both back-stimulated Raman scattering and back-stimulated Brillouin scattering at laser intensities below 1 × 1015 W cm-2. An abnormal hot-electron phenomenon is also investigated, using targets of different thicknesses.
Matter and Radiation at Extremes
2024, 9(1): 015602
Ruirong Wang 1,2,*Zhiheng Fang 1,2Honghai An 1,2Jun Xiong 1,2[ ... ]Wei Wang 1,2
Author Affiliations
Abstract
1 Shanghai Institute of Laser Plasma, China Academy of Engineering Physics, Shanghai 201899, China
2 National Laboratory on High Power Lasers and Physics, Shanghai 201899, China
An aberration-free imaging technique was used to design a double-spherically bent crystal spectrometer with high energy and spatial resolutions to ensure that the individual spectral lines are represented as perfectly straight lines on the detector. After obtaining the matched parameters of the two crystals via geometry-based optimization, an alignment method was employed to allow the spacing between the crystals and the detector to be coupled with the source. The working principle of this spectrum-measuring scheme was evaluated using a Cu X-ray tube. High-quality spectra with energy resolutions (EE) of approximately 3577 were obtained for a relatively large source size.
double-spherically bent crystal aberration-free imaging X-ray spectra 
Chinese Optics Letters
2020, 18(6): 061101
作者单位
摘要
中国工程物理研究院上海激光等离子体研究所, 上海 201800
基于神光Ⅱ升级装置,研究了纳秒/皮秒双束激光联合驱动双层靶的伽马(γ)辐射特征。利用ns束激光与CH薄膜靶相互作用,产生大尺度近临界密度等离子体,然后将ps束激光作用在该等离子体上,产生高能电子,高能电子穿过2 mm厚的Au靶,通过轫致辐射产生γ射线。对不同方向的γ辐射能谱和靶室外的γ辐射剂量分布进行实验测量,发现γ辐射集中在激光前冲方向,具有较小的发散角,而且在该方向上高能段的γ辐射较强。这说明双层靶的设计可以提高ps束激光与等离子体的能量耦合效率,提高高能电子温度,增加高能电子数目,有利于高能段γ辐射在ps束激光的前冲方向集中。另外,在靶室外距离靶点1.25 m处测到的50 keV以上γ辐射的单发次最大剂量为277 μGy。本研究结果对γ辐射的防护和应用具有参考价值。
激光器 双层靶 γ辐射; 能谱 剂量 角分布 
中国激光
2019, 46(8): 0801007
Author Affiliations
Abstract
Shanghai Institute of Laser Plasma, Shanghai 201800, China
A new crystal spectrometer for application in X-ray opacity experiments is proposed. The conditions necessary to yield broad spectral coverage with a resolution ${>}$500, strong rejection of hard X-ray backgrounds and negligible source broadening for extended sources are formulated. In addition, the design, response modeling and reporting of an elliptical crystal spectrometer in conjunction with a linear detector are presented. The measured results demonstrate the performance of the new crystal spectrometer with a broad energy coverage range, high spectral resolution, and high luminosity (good collection efficiency). This spectrometer can be used in combination with point-projection backlighting techniques as utilized in X-ray opacity experiments. Specifically, the X-ray source, transmission and self-emission spectra of the sample can be measured simultaneously in a single shot, which can reduce the experimental uncertainties from shot-to-shot fluctuations. The new crystal spectrometer has been used in the X-ray opacity experiment to precisely measure the aluminum $K$-absorption edge shift in the energy range around 1.560 keV in strongly compressed matter. It is demonstrated that the spectrometer can be used to realize measurements of new and unpredictable physical interactions of interest, as well as basic and applied high-energy-density science.
high energy density physics inertial confinement fusion ultra-intense ultra-short pulse laser interaction with matters 
High Power Laser Science and Engineering
2018, 6(1): 010000e3
作者单位
摘要
中国工程物理研究院上海激光等离子体研究所, 上海 201800
数千电子伏特(Multi-keV)量级的X射线背光成像是高能密度等离子体物理实验中常用的一种诊断技术。在神光II激光装置上, 研究了纳秒激光驱动钛4.7 keV波段及氯2.7 keV波段背光面源的性能。研究结果表明, 氯背光能谱以类He线及类H线为主, 其中2.7 keV波段的类He-α线最强; 在当前神光II激光加载能力下, 氯背光面源相对强度超过钛背光面源一个量级, 因此, 可选用氯He-α线的X光探针进行背光诊断。
X射线光学 背光面源 等离子体 K壳层能谱  
中国激光
2017, 44(9): 0901011
Author Affiliations
Abstract
1 中国工程物理研究院 上海激光等离子体研究所, 上海 201800
2 中国科学技术大学 国家同步辐射实验室, 合肥 230029
3 北京应用物理与计算数学研究所, 北京 100094
To probe the electron density distribution of the plasma,double-frequency grating shearing interferometry based on the soft X-ray laser technology is developed.The 13.9 nm Ni-like Ag soft X-ray laser is used as a probe to make attempt on the diagnosis of laser produced plasma from a planar gold wafer target.Clear interference fringes image is achieved,which fully demonstrates the practicability of this technology.However,there are some problems such as the unclear target surface in the image.Analysis indicates the main reasons of these problems and a reasonable solution is proposed to improve this technology.
等离子体诊断 干涉技术 软X射线激光 diagnoses of plasma interference technique soft X-ray laser 
Collection Of theses on high power laser and plasma physics
2015, 13(1): 062003
作者单位
摘要
1 中国工程物理研究院 上海激光等离子体研究所, 上海 201800
2 中国科学技术大学 国家同步辐射实验室, 合肥 230029
3 北京应用物理与计算数学研究所, 北京 100094
针对高温稠密激光等离子体临界密度附近电子密度的诊断需求,发展了基于软X射线激光的软X射线双频光栅干涉诊断技术.利用波长13.9 nm的类镍银软X射线激光作为探针,掠入射式的双频光栅作为分光干涉元件,对激光辐照金平面靶产生的等离子体进行诊断尝试.实验获得了清晰的干涉条纹图像,充分表明该技术的实用性.但结果中存在靶面不清晰等问题,为此,提出了初步的解决方案.
等离子体诊断 干涉技术 软X射线激光 diagnoses of plasma interference technique soft X-ray laser 
强激光与粒子束
2015, 27(6): 062003
Author Affiliations
Abstract
Shanghai Institute of Laser Plasma, Shanghai 201800, China
Recent experimental results on NIF revealed a much higher stimulated Brillouin scattering (SBS) and stimulated Raman scattering (SRS) backscatter than expected; one possible reason was due to the coherence between incident laser beams. In our research, two laser beams (, in each one) with different coherent degrees between them from the SG-II facility were employed to irradiate an Au plate target; the backscatter of SBS and SRS in the range of the given solid angle had been measured. The results showed that it could change dramatically corresponding to the difference of the coherent degree between the two laser beams, and there was usually more intense backscatter the higher the coherent degree between the incident beams.
backscatter coherence laser–plasma interaction 
High Power Laser Science and Engineering
2013, 1(2): 02000094
作者单位
摘要
中国工程物理研究院 上海激光等离子体研究所, 上海 201800
在神光Ⅱ激光装置上,针对外径260 μm的柱形靶,采用大焦斑拼接的办法(焦斑直径约200 μm),开展了八路激光直接驱动压缩实验。利用第九路激光驱动钼X射线背光,使用KirkpatrickBaez显微镜成像以及条纹相机记录的方法,获得了柱形靶内爆流线图,据此给出的压缩后密度约为初始密度的120倍。该密度处于快点火电子产生区和能量沉积区密度之间,正是电子束需要传输的密度区域。神光Ⅱ皮秒激光运行后,可以利用这种压缩的柱形靶开展电子束在稠密等离子体中传输的实验研究。
柱形靶 压缩 直接驱动 电子传输 快点火 cylindrical target compression direct drive electron transport fast ignition 
强激光与粒子束
2013, 25(9): 2303

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