Ping Zhu  Associate Research Professor

National Laboratory on High Power Laser and Physics

Shanghai Institute of Optics and Fine Mechanics, CAS

No.390 Qinghe Road, Jiading District, Shanghai 201800, China

Email:zhp1990@siom.ac.cn

Research Areas

High power ultrashort pulse lasers; Ultrafast spatiotemporal measurement; Plasma optics

Education

2012.9 - 2017.7 University of Chinese Academy of Sciences Ph.D

2008.9 - 2012.7 Tianjin University Bachelor


Experience

   
Work Experience

2020.1 - now, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Associate Research Professor

2017.8 - 2020.1, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Assistant Research  Professor


Publications

   
Papers

(1) 波长编码的单次高时空分辨全光学探针, Wavelength encoded single-shot high-spatiotemporal resolution all-optical probe, 物理学报, 2023, 
(2) 高功率激光驱动器中的若干关键工程光学问题, Key Optical Engineering Issues of High-Power Laser Facility, 光学学报, 2023, 
(3) 基于三阶色散的拍瓦激光信噪比主动调控技术, Active Control Technology of Petawatt Laser Signal-to-Noise Ratio Based on Third-Order Dispersion, 光学学报, 2023, 
(4) Single-shot spatiotemporal plasma density diagnosis using an arbitrary time-wavelength-encoded biprism interferometer, Optics and Lasers in Engineering, 2023, 
(5) An interview with Vladimir Tikhonchuk, High Power Laser Science and Engineering, 2023, 
(6) A laser wakefield acceleration facility using SG-II petawatt laser system, REVIEW OF SCIENTIFIC INSTRUMENTS, 2022, 
(7) Simple single-shot complete spatiotemporal intensity and phase measurement of an arbitrary ultrashort pulse using coherent modulation imaging, Optics Letters, 2022, 
(8) Tunable plasma narrow-band filter for ultrafast high-power lasers, APPLIED PHYSICS EXPRESS, 2021, 
(9) Experimental demonstration of 10(11) temporal contrast in pure nanosecond optical parametric chirped pulse amplifiers, APPLIED OPTICS, 2021, 
(10) Single-Shot Temporal Contrast Enhancement Measurement of a Plasma Mirror by a Chirped Pulse, APPLIED SCIENCES-BASEL, 2021, 
(11) 基于全光纤光谱干涉的多路超短脉冲时间同步单次测量技术, Single-Shot Synchronous Measurement Technique for Multichannel Ultra-Short Pulse Lasers Based on All-Fiber Spectral Interference, 中国激光, 2021, 
(12) Three-dimensional spatiotemporal self-referenced characterization of ultrashort pulses using the coherent diffraction imaging technique, Proc. SPIE, 2021, 
(13) Single-shot diagnostics for spatiotemporal laser-plasma evolution by the multi-dimensional encoding (MuDE) holography, Proc. SPIE, 2021, 
(14) Ultrashort laser pulse spatiotemporal profile manipulation using a single-mode-few-mode optical fiber device, JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS, 2021, 
(15) Ultra-broadband high conversion efficiency optical parametric chirped-pulse amplification based on YCOB crystals, OPTICS EXPRESS, 2020, 
(16) Online optimization and measurement of femtosecond laser pulse in multi-petawatt laser facility, OPTIK, 2020, 
(17) 超短超强激光装置中消色差技术的研究与进展, Research Progress of Achromatic Technology in Ultra-Short and Ultra-Intense Laser Facility, 激光与光电子学进展, 2020, 
(18) Highly reliable measurement of ultrashort laser pulses, JOURNAL OF APPLIED PHYSICS, 2020, 
(19) 高功率超短脉冲系统等离子体镜的焦斑退化分析, Focal Spot Deterioration Analysis of Plasma Mirrors in High-Power Ultrashort Laser Systems, 光学学报, 2020, 
(20) Conicoid Plasma Mirrors Adjustment by a Multi-Sub-Aperture (MSA) Method, Proc. OSA Frontiers in Optics, 2020, 
(21) Characterization of spectral broadening and contrast enhancement in cross-polarized wave generation based on gadolinium gallium garnet crystal, APPLIED PHYSICS EXPRESS, 2020, 
(22) Temporal contrast enhancement of ultrashort pulses using a spatiotemporal plasma-lens filter, OPTICS LETTERS, 2020, 
(23) Picosecond frequency-resolved optical gating based on a modified ptychographic-based algorithm for use in a petawatt laser, OPTICAL ENGINEERING, 2020, 
(24) Prediction of deep learning for spectrum-pulse width on petawatt laser, Proc. of SPIE, 2020, 
(25) Focal Spot Deterioration Analysis of Plasma Mirrors in High-Power Ultrashort Laser Systems, ACTA OPTICA SINICA, 2020, 
(26) On Target Contrast Ratio Study for Petawatt Level Femtosecond Laser System, SHORT-PULSE HIGH-ENERGY LASERS AND ULTRAFAST OPTICAL TECHNOLOGIES, 2019, 
(27) Numerical Investigation of Phase-Conjugate Wave Generation as a Pulse Cleaner in Femtosecond Petawatt Laser Systems, IEEE PHOTONICS JOURNAL, 2019, 
(28) Research on the cross polarization wave generation based on gadolinium gallium garnet crystal, HIGHPOWERLASERSANDAPPLICATIONSX, 2019, 
(29) Dynamic chromatic aberration pre-compensation scheme for ultrashort petawatt laser systems, OPTICS EXPRESS, 2019, 
(30) Petawatt and exawatt class lasers worldwide, Petawatt and exawatt class lasers worldwide, HIGH POWER LASER SCIENCE AND ENGINEERING, 2019, 
(31) 基于变焦像传递的飞秒拍瓦激光系统色差补偿, Compensation for Chromatic Aberration in Femtosecond Petawatt Laser Systems Based on Zoom Image Transfer, 中国激光, 2019, 
(32) Spatiotemporal analysis of plasma mirrors for high-contrast ultra-intense laser pulses, SHORT-PULSE HIGH-ENERGY LASERS AND ULTRAFAST OPTICAL TECHNOLOGIES, 2019, 
(33) Compensation for Chromatic Aberration in Femtosecond Petawatt Laser Systems Based on Zoom Image Transfer, CHINESE JOURNAL OF LASERS-ZHONGGUO JIGUANG, 2019, 
(34) Broadband main OPCPA amplifier at 808 nm wavelength in high deuterated DKDP crystals, OPTICS LETTERS, 2018, 
(35) Status and development of high-power laser facilities at the NLHPLP, HIGH POWER LASER SCIENCE AND ENGINEERING, 2018, 
(36) Measurement and compensation for the Chromatic aberration of SG-II 5PW laser system, TENTH INTERNATIONAL CONFERENCE ON INFORMATION OPTICS AND PHOTONICS, 2018, 
(37) Status and development of high-power laser facilities at the NLHPLP, Status and development of high-power laser facilities at the NLHPLP, HIGH POWER LASER SCIENCE AND ENGINEERING, 2018,
(38) Analysis and construction status of SG-II 5PW laser facility, HIGH POWER LASER SCIENCE AND ENGINEERING, 2018, 
(39) Accuracy measurements of large-aperture femtosecond laser pulses in multipetawatt laser facility, OPTICAL ENGINEERING, 2018, 
(40) Systematic study of spatiotemporal influences on temporal contrast in the focal region in large-aperture broadband ultrashort petawatt lasers, HIGH POWER LASER SCIENCE AND ENGINEERING, 2018, 
(41) Complete measurement of spatiotemporally complex multi-spatial-mode ultrashort pulses from multimode optical fibers using delay-scanned wavelength-multiplexed holography, OPTICS EXPRESS, 2017, 
(42) 5PW超短脉冲空间滤波器色差对时间信噪比的影响, Influence of Chromatic Aberration from Spatial Filters for 5 PW Ultra-Short Pulses on Temporal Contrast, 光学学报, 2017, 
(43) Complete measurement of spatiotemporally complex multi-spatial-mode ultrashort pulses from multimode optical fibers using delay-scanned wavelength-multiplexed holography, OPT. EXPRESS, 2017, 
(44) Multi Petawatt Laser Design for the SHENGUANG II Laser Facility, HIGH-POWER, HIGH-ENERGY, AND HIGH-INTENSITY LASER TECHNOLOGY II, 2015, 
(45) Analysis of temporal contrast degradation due to wave front deviation in large aperture ultra-short pulse focusing system, HIGH-POWER LASERS AND APPLICATIONS VII, 2014, 
(46) Output temporal contrast simulation of a large aperture high power short pulse laser system, HIGH POWER LASER SCIENCE AND ENGINEERING, 2014, 
(47) 大口径超短脉冲聚焦系统波前误差对时间信噪比的影响, 光学学报, 2014

Patents
( 1 ) 多光束小角度入射束靶耦合瞄准定位装置和方法, 发明专利, 2022, 第 2 作者, 专利号: CN115166903A
( 2 ) 多光束小角度入射束靶耦合瞄准定位装置和方法, 2023, 第 2 作者, 专利号: CN115166903B
( 3 ) 基于多孔径编码的二次聚焦曲面镜精密调节及焦面确定方法, 发明专利, 2022, 第 3 作者, 专利号: CN115268044A
( 4 ) 波长编码的探针光产生装置, 发明专利, 2022, 第 1 作者, 专利号: CN115128001A
( 5 ) 基于空频复用的单次曝光超短脉冲时空测量装置和方法, 发明专利, 2022, 第 1 作者, 专利号: CN114739521A
( 6 ) 基于空频复用的单次曝光超短脉冲时空测量装置和方法, 发明专利, 2022, 第 1 作者, 专利号: CN202210321264.1
( 7 ) 焦斑处超短激光脉冲宽度测量装置与方法, 发明专利, 2022, 第 2 作者, 专利号: CN114544010A
( 8 ) 一种快速收敛的超短脉冲波形与相位重建方法, 发明专利, 2021, 第 5 作者, 专利号: CN113091922A
( 9 ) 一种快速收敛的超短脉冲波形与相位重建方法, 2023, 第 5 作者, 专利号: CN113091922B
( 10 ) 基于同步啁啾探针脉冲的等离子体镜单次信噪比提升度测量方法及装置, 发明专利, 2021, 第 1 作者, 专利号: CN112903123A
( 11 ) 基于全光纤光谱干涉的单次多路同步测量方法及装置, 发明专利, 2021, 第 1 作者, 专利号: CN112881797A
( 12 ) 氙灯阵列型渐开抛物复合面反射腔, 发明专利, 2021, 第 7 作者, 专利号: CN112366505A
( 13 ) 用于调试光栅压缩器的光纤阵列装置及其调试方法, 专利授权, 2019, 第 7 作者, 专利号: CN110554513A
( 14 ) 宽带激光系统色差动态补偿装置, 发明专利, 2019, 第 3 作者, 专利号: CN109407332A
( 15 ) 拍瓦级高功率激光系统靶面焦点精确定位的方法, 专利授权, 2020, 第 2 作者, 专利号: CN109029929B
( 16 ) 大口径飞秒激光脉冲宽度准确测量装置, 发明专利, 2018, 第 6 作者, 专利号: CN107677378A

Students

现指导学生

姚修宇  硕士研究生  080300-光学工程  

易友建  博士研究生  080300-光学工程  

童妙妍  硕士研究生  080300-光学工程  

龚泽兆  硕士研究生  080300-光学工程