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  • Zhang Hao,Zhao Jie,Hu Yanting,Li Qianni,Lu Yu,Cao Yue,Zou Debin,Sheng Zhengming,Pegoraro Francesco,Mckenna Paul,Shao Fuqiu,Yu Tongpu(Department of Physics,National University of Defense Technology;SUPA,Department of Physics,University of Strathclyde;School of Physics and Astronomy,Shanghai Jiao Tong University,Collaborative Innovation Center of IFSA (CICIFSA),Key Laboratory for Laser Plasmas (MoE);Tsung-Dao Lee Institute;Department of Physics Enrico Fermi,University of Pisa,and CNR/INO).Efficient bright g-ray vortex emission from a laser-illuminated light-fan-in-channel target[J].High Power Laser Science and Engineering,2021,第3期
  • Alexander Bespaly1,2,Indranuj Dey2,Jenya Papeer2,Assaf Shaham2,Pavel Komm2,Ibrahim Hadad2,Gilad Marcus1,Arie Zigler3(Department of Applied Physics,The Hebrew University of Jerusalem;Department of Research and Development,HIL Applied Medical,Ltd.;Racah Institute of Physics,The Hebrew University of Jerusalem).Control of amorphous solid water target morphology induced by deposition on a charged surface[J].High Power Laser Science and Engineering,2021,第3期
  • Tina Ebert1,René Heber1,Torsten Abel1,Johannes Bieker2,Gabriel Schaumann1,Markus Roth1(Institut für Kernphysik,Department of Physics,Technische Universit?t Darmstadt;Integrierte Mikro-Nano-Systeme,Department of Electrical Engineering and Information Technology,Technische Universit?t Darmstadt).Targets with cone-shaped microstructures from various materials for enhanced high-intensity laser–matter interaction[J].High Power Laser Science and Engineering,2021,第2期
  • Jinfang Yang1,2,Zhaohua Wang2,3,Jiajun Song2,4,Renchong Lv1,2,Xianzhi Wang2,4,Jiangfeng Zhu1,Zhiyi Wei2,4,5(School of Physics and Optoelectronic Engineering,Xidian University;Beijing National Laboratory for Condensed Matter Physics,Institute of Physics,Chinese Academy of Sciences;CAS Center for Excellence in Ultra-intense Laser Science;University of Chinese Academy of Sciences;Songshan Lake Materials Laboratory).Diode-pumped 10 W femtosecond Yb:CALGO laser with high beam quality[J].High Power Laser Science and Engineering,2021,第2期
  • Deen Wang1,2,3,Xin Zhang3,Wanjun Dai3,Ying Yang3,Xuewei Deng3,Lin Chen1,2,3,Xudong Xie3,Dongxia Hu3,Feng Jing3,Zeping Yang4,Qiang Yuan3,Xiaofeng Wei3,Qihua Zhu3,Wanguo Zheng3,Xiaomin Zhang3,Lei Huang1,2(Key Laboratory of Photonic Control Technology (Tsinghua University),Ministry of Education;State Key Laboratory of Precision Measurement Technology and Instruments,Department of Precision Instrument,Tsinghua University;Research Center of Laser Fusion,CAEP;Institute of Optics and Electronics,Chinese Academy of Sciences).1178 J, 527 nm near diffraction limited laser based on a complete closed-loop adaptive optics controlled off-axis multi-pass amplification laser system[J].High Power Laser Science and Engineering,2021,第2期
  • Caijian Xie1,Tigang Ning1,Jingjing Zheng1,Li Pei1,Jianshuai Wang1,Jing Li1,Haidong You2,Chuangye Wang1,Xuekai Gao1(Key Laboratory of All Optical Network & Advanced Telecommunication Network of EMC,Institute of Lightwave Technology,Beijing Jiaotong University;Science and Information College,Qingdao Agricultural University).Amplification characteristics in active tapered segmented cladding fiber with large mode area[J].High Power Laser Science and Engineering,2021,第2期
  • Chenyi Su1,Xingqi Xu1,2,Jinghua Huang1,Bailiang Pan1(Department of Physics,Zhejiang University;Interdisciplinary Center for Quantum Information,State Key Laboratory of Modern Optical Instrumentation,and Zhejiang Province Key Laboratory of Quantum Technology and Device,Department of Physics,Zhejiang University).Modeling of three-dimensional exciplex pumped fluid Cs vapor laser with transverse and longitudinal gas flow[J].High Power Laser Science and Engineering,2021,第2期
  • M.Turner1,A.J.Gonsalves1,S.S.Bulanov1,C.Benedetti1,N.A.Bobrova2,V.A.Gasilov2,P.V.Sasorov2,3,G.Korn3,K.Nakamura1,J.van Tilborg1,C.G.Geddes1,C.B.Schroeder1,E.Esarey1(Lawrence Berkeley National Laboratory;Keldysh Institute of Applied Mathematics RAS;ELI Beamlines,Dolní B?e?any).Radial density profile and stability of capillary discharge plasma waveguides of lengths up to 40 cm[J].High Power Laser Science and Engineering,2021,第2期
  • Xin Zhang1,Shoufei Gao2,Yingying Wang2,Wei Ding2,Pu Wang1(National Center of Laser Technology,Institute of Laser Engineering,Beijing University of Technology;Institute of Photonics Technology,Jinan University).Design of large mode area all-solid anti-resonant fiber for high-power lasers[J].High Power Laser Science and Engineering,2021,第2期
  • Xinlei Qian1,2,Wei Fan1,2,Xinghua Lu1,Xiaochao Wang1(National Laboratory on High Power Laser and Physics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences;Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences).Smooth pulse recovery based on hybrid wavelet threshold denoising and first derivative adaptive smoothing filter[J].High Power Laser Science and Engineering,2021,第2期
  • Pengjie Wang1,Guijun Qi1,Zhuo Pan1,Defeng Kong1,Yinren Shou1,Jianbo Liu1,Zhengxuan Cao1,Zhusong Mei1,Shirui Xu1,Zhipeng Liu1,Shiyou Chen1,Ying Gao1,Jiarui Zhao1,Wenjun Ma1,2,3(State Key Laboratory of Nuclear Physics and Technology,Center for Applied Physics and Technology,School of Physics,Peking University;Beijing Laser Acceleration Innovation Center Institute of Guangdong Laser Plasma Technology).Fabrication of large-area uniform carbon nanotube foams as near-critical-density targets for laser–plasma experiments[J].High Power Laser Science and Engineering,2021,第2期
  • Francisco Suzuki-Vidal1,Thomas Clayson2,3,Chantal Stehlé4,Uddhab Chaulagain5,Jack W.D.Halliday1,Mingying Sun6,Lei Ren6,Ning Kang6,Huiya Liu6,Baoqiang Zhu6,Jianqiang Zhu6,Carolina De Almeida Rossi1,Teodora Mihailescu1,Pedro Velarde7,Manuel Cotelo7,John M.Foster8,Colin N.Danson8,Christopher Spindloe9,Jeremy P.Chittenden1,Carolyn Kuranz10(Blackett Laboratory,Imperial College London;First Light Fusion Ltd Magdrive Ltd;LERMA,Sorbonne-Université;ELI Beamlines Center,Institute of Physics,Czech Academy of Sciences;Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences;Instituto de Fusión Nuclear Guillermo Velarde,Universidad Politécnica de Madrid;AWE plc.,Aldermaston;Science and Technology Facilities Council,Rutherford Appleton Laboratory,Harwell Campus;University of Michigan).First radiative shock experiments on the SG-Ⅱ laser[J].High Power Laser Science and Engineering,2021,第2期
  • Ai Du1,2,Yi Ma1,2,Mingfang Liu1,2,Zhihua Zhang1,2,Guangwei Cao3,Hongwei Li3,Ling Wang4,5,Peijian Si4,Jun Shen1,2,Bin Zhou1,2(Shanghai Key Laboratory of Special Artificial Microstructure Materials and Technology,Tongji University;School of Physics Science and Engineering,Tongji University;National Space Science Center,Chinese Academy of Sciences;Hangzhou Dianzi University;Hangzhou Regenovo Biotechnology Co.,Ltd.).Morphology analysis of tracks in the aerogels impacted by hypervelocity irregular particles[J].High Power Laser Science and Engineering,2021,第2期
  • Tangyang Pu1,Wenwen Liu1,Yueliang Wang2,Xiaoming Pan1,Leiqing Chen1,Xiaofeng Liu3(College of Mechanical and Electrical Engineering,Wenzhou University;National Engineering Laboratory for Modern Materials Surface Engineering Technology,Institute of New Materials,Guangdong Academy of Sciences;Key Laboratory of Materials for High Power Laser,Shanghai Institute of Optics and Fine Mechanics).A novel laser shock post-processing technique on the laser-induced damage resistance of 1ω HfO2/SiO2 multilayer coatings[J].High Power Laser Science and Engineering,2021,第2期
  • Xiaomei Zhang1,2,3,Baifei Shen2,Lingang Zhang1,3,Yin Shi4(State Key Laboratory of High Field Laser Physics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences;Department of Physics,Shanghai Normal University;CAS Center for Excellence in Ultra-intense Laser Science;Department of Mechanical and Aerospace Engineering,University of California at San Diego).New phase-matching selection rule to generate angularly isolated harmonics[J].High Power Laser Science and Engineering,2021,第2期
  • Fumika Isono1,2,Jeroen van Tilborg1,Samuel K.Barber1,Joseph Natal1,2,Curtis Berger1,2,Hai-En Tsai1,Tobias Ostermayr1,Anthony Gonsalves1,Cameron Geddes1,Eric Esarey1(Lawrence Berkeley National Laboratory;University of California).High-power non-perturbative laser delivery diagnostics at the final focus of 100-TW-class laser pulses[J].High Power Laser Science and Engineering,2021,第2期
  • Wei Gao,Wenhui Fan,Pei Ju,Gang Li,Yanpeng Zhang,Aifeng He,Qi Gao,Zhe Li(State Key Laboratory of Transient Optics and Photonics;Key Laboratory for Physical Electronics and Devices of the Ministry of Education&Shaanxi Key Laboratory of Information Photonic Technique;University of Chinese Academy of Sciences;Key Laboratory on Applied Physics and Chemistry;Collaborative Innovation Center of Extreme Optics).Effective suppression of mode distortion induced by amplifiers stimulated Raman scattering in high-power fiber[J].高功率激光科学与工程(英文版),2021,第2期
  • Yumi Kaneyasu1,Keiji Nagai1,2,Marilou Cadatal-Raduban1,3,Daniil Golovin1,Satoshi Shokita1,Akifumi Yogo1,Takahisa Jitsuno1,Takayoshi Norimatsu1,Kohei Yamanoi1(Institute of Laser Engineering,Osaka University;Institute of Innovative Research (IIR),Tokyo Institute of Technology – Suzukakedai Campus;Centre for Theoretical Chemistry and Physics,School of Natural and Computational Sciences,Massey University).Fabrication of disk-shaped, deuterated resorcinol/formaldehyde foam target for laser–plasma experiments[J].High Power Laser Science and Engineering,2021,第2期
  • Colin N.Danson1,2,3,Malcolm White4,5,6,John R.M.Barr7,Thomas Bett8,Peter Blyth9,10,11,12,David Bowley13,Ceri Brenner14,Robert J.Collins15,Neal Croxford16,A.E.Bucker Dangor17,Laurence Devereux18,Peter E.Dyer19,Anthony Dymoke-Bradshaw20,Christopher B.Edwards1,14,Paul Ewart21,Allister I.Ferguson22,John M.Girkin23,Denis R.Hall24,David C.Hanna25,Wayne Harris26,David I.Hillier1,Christopher J.Hooker14,Simon M.Hooker21,Nicholas Hopps21,17,Janet Hull27,David Hunt8,Dino A.Jaroszynski28,Mark Kempenaars29,Helmut Kessler30,Sir Peter L.Knight17,Steve Knight31,Adrian Knowles32,Ciaran L.S.Lewis32,Ken S.Lipton33,Abby Littlechild34,John Littlechild34,Peter Maggs35,Graeme P.A.Malcolm OBE36,Stuart P.D.Mangles17,William Martin37,Paul McKenna28,Richard O.Moore1,Clive Morrison38,Zulfikar Najmudin17,David Neely14,28,Geoff H.C.New17,Michael J.Norman8,Ted Paine31,Anthony W.Parker14,Rory R.Penman1,Geoff J.Pert17,Chris Pietraszewski39,Andrew Randewich1,Nadeem H.Rizvi40,Nigel Seddon MBE41,Zheng-Ming Sheng28,42,David Slater43,Roland A.Smith17,Christopher Spindloe14,Roy Taylor17,Gary Thomas44,John W.G.Tisch17,Justin S.Wark2,21,Colin Webb21,S.Mark Wiggins28,Dave Willford45,Trevor Winstone14(AWE Aldermaston,Reading;Oxford Centre for High Energy Density Science,Department of Physics,Clarendon Laboratory,University of Oxford;Centre for Intertial Fusion Studies,Blackett Laboratory,Imperial College London;Formerly of Electrox,Letchworth Formerly of Central Laser Facility,Rutherford Laboratory Formerly of Ferranti Defence Systems Leonardo Retired,AWE,Reading Formerly of AWE Formerly of Laser Lines Ltd Formerly of Optilas Ltd Retired,Pro-Lite Technology Specialised Imaging Ltd;Central Laser Facility,STFC Rutherford Appleton Laboratory;Magna-Power Electronics Ltd,Reading DeBe Lasers,Needham Laser Technologies;Blackett Laboratory,Imperial College London;SPIE Europe;Professor Emeritus (Physics),University of Hull,Kingston upon Hull;Kentech Instruments Ltd;Department of Physics,Clarendon Laboratory,University of Oxford;Professor Emeritus,Department of Physics,University of Strathclyde;Department of Physics,Durham University;Professor Emeritus (Photonics),Heriot-Watt University;Professor Emeritus,University of Southampton;Optical Surfaces Ltd JEH Lasers Ltd;Scottish Universities Physics Alliance,Department of Physics,University of Strathclyde;ITER Organization,Saint-Paul-lez-Durance Manx Precision Optics Ltd Laser Lines Ltd;Centre for Plasma Physics,Queen’s University Belfast;Retired,Founder,and former MD,Rofin-Sinar UK Ltd Heraeus Noblelight Ltd Mirli Books,Chelmsford M Squared Lasers Ltd;University of Hertfordshire;E&EO UK Ltd,Barton-upon-Humber IC Optical Systems Ltd Laser Micromachining Ltd MBDA UK Ltd;Shanghai Jiao Tong University;Photek Ltd,St Leonards-on-Sea Island Optics Ltd,Ballasalla Retired,Lincoln).A history of high-power laser research and development in the United Kingdom[J].High Power Laser Science and Engineering,2021,第2期
  • M.G.Capeluto1,2,A.Curtis1,C.Calvi3,R.Hollinger1,V.N.Shlyaptsev1,J.J.Rocca1,3(Electrical and Computer Engineering Department,Colorado State University;Departamento de Física,Universidad de Buenos Aires-IFIBA;Physics Department,Colorado State University).Deuterated polyethylene nanowire arrays for high-energy density physics[J].High Power Laser Science and Engineering,2021,第2期
  • Xuan He1,Bin Zhang1,2,3,Shuailin Liu1,Linyong Yang1,2,3,Jinmei Yao1,2,3,Qilin Wu1,Yuxin Zhao1,Tao Xun1,Jing Hou1,2,3(College of Advanced Interdisciplinary Studies,National University of Defense Technology;State Key Laboratory of Pulsed Power Laser Technology;Hunan Provincial Key Laboratory of High Energy Laser Technology).High-power linear-polarization burst-mode all-fibre laser and generation of frequency-adjustable microwave signal[J].High Power Laser Science and Engineering,2021,第2期
  • Sang-Hoon Nam,Garima C. Nagar,Dennis Dempsey,Ond,ej Novák,Bonggu Shim,Kyung-Han Hong(Research Laboratory of Electronics,Massachusetts Institute of Technology (MIT),Cambridge,MA02139,USA;Department of Physics,Applied Physics and Astronomy,Binghamton University,State University of New York,Binghamton,NY13902,USA;HiLASE Centre,Institute of Physics of the Czech Academy of Sciences,25241 Dolní B?e?any,Czech Republic;Presently with MIT Lincoln Laboratory,Lexington,MA02420,USA).Multi-octave-spanning supercontinuum generation through high-energy laser filaments in YAG and ZnSe pumped by a 2.4 μm femtosecond Cr:ZnSe laser[J].高功率激光科学与工程(英文版),2021,第2期
  • M.Galimberti1,F.G.Bisesto2,M.Galletti2(Central Laser Facility,Science and Technology Facilities Council,Rutherford Appleton Laboratory;INFN Laboratori Nazionali di Frascati).Innovative single-shot 2D pulse front tilt diagnostic[J].High Power Laser Science and Engineering,2021,第2期
  • Leonida A. Gizzi,Luca Labate,Federica Baffigi,Fernando Brandi,Giancarlo Bussolino,Lorenzo Fulgentini,Petra K,ster,Daniele Palla(Intense Laser Irradiation Laboratory (ILIL),Istituto Nazionale di Ottica - Consiglio Nazionale delle Ricerche (INO-CNR),Sede Secondaria di Pisa,56124Pisa,Italy;Istituto Nazionale di Fisica Nucleare (INFN),Sezione di Pisa,56127Pisa,Italy).Overview and specifications of laser and target areas at the Intense Laser Irradiation Laboratory[J].高功率激光科学与工程(英文版),2021,第2期
  • J,rg K,rner,Venkatesan Jambunathan,Fangxin Yue,Jürgen Reiter,Ond,ej Slezák,Petr Navrátil,Samuel Paul David,Antonio Lucianetti,Joachim Hein,Tomá,Mocek,Malte C. Kaluza(HiLASE Centre,Institute of Physics of the Czech Academy of Sciences,Dolní B?e?any,Czech Republic;Institute of Optics and Quantum Electronics,Friedrich Schiller University Jena,Jena,Germany;Helmholz Institute Jena,Jena,Germany).Diode-pumped,electro-optically Q-switched,cryogenic Tm:YAG laser operating at 1.88 μm[J].高功率激光科学与工程(英文版),2021,第2期
  • Kun Huang1;Yinqi Wang1;Jianan Fang1;Huaixi Chen2,3;Minghang Xu4;Qiang Hao4;Ming Yan1;Heping Zeng1,5,6,7(State Key Laboratory of Precision Spectroscopy, East China Normal University;Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences;University of Chinese Academy of Sciences;Shanghai Key Laboratory of Modern Optical System, and Engineering Research Center of Optical Instrument and System, Ministry of Education, School of Optical Electrical and Computer Engineering, University of Shanghai for Science and Technology;Jinan Institute of Quantum Technology;CAS Center for Excellence in Ultra-intense Laser Science;Shanghai Research Center for Quantum Sciences).Highly efficient difference-frequency generation for mid-infrared pulses by passively synchronous seeding[J].High Power Laser Science and Engineering,2021,第1期
  • Yan-Jun Gu1,2,Sergei V.Bulanov1,3(Institute of Physics of the ASCR, ELI-Beamlines, Na Slovance 2;Institute of Laser Engineering, Osaka University;Kansai Photon Research Institute, National Institutes for Quantum and Radiological Science and Technology).Magnetic field annihilation and charged particle acceleration in ultra-relativistic laser plasmas[J].High Power Laser Science and Engineering,2021,第1期
  • J?rg K?rner1,2,3,Venkatesan Jambunathan4,Fangxin Yue1,Jürgen Reiter2,3,Ondrej Slezák1,Petr Navrátil1,Samuel Paul David1,Antonio Lucianetti1,Joachim Hein2,3,Tomá? Mocek1,Malte C.Kaluza2,3(HiLASE Centre,Institute of Physics of the Czech Academy of Sciences;Institute of Optics and Quantum Electronics,Friedrich Schiller University Jena;Helmholz Institute Jena;Hi LASE Centre,Institute of Physics of the Czech Academy of Sciences).Diode-pumped, electro-optically Q-switched, cryogenic Tm:YAG laser operating at 1.88 μm[J].高功率激光科学与工程(英文版),2021,第1期
  • Sang-Hoon Nam1;Garima C.Nagar2;Dennis Dempsey2;Ondrej Novák3;Bonggu Shim2;Kyung-Han Hong4,5(Research Laboratory of Electronics, Massachusetts Institute of Technology (MIT);Department of Physics, Applied Physics and Astronomy, Binghamton University, State University of New York;HiLASE Centre, Institute of Physics of the Czech Academy of Sciences;Research Laboratory of Electronics, Massachusetts Institute of Technology MIT;Presently with MIT Lincoln Laboratory).Multi-octave-spanning supercontinuum generation through high-energy laser filaments in YAG and ZnSe pumped by a 2.4 μm femtosecond Cr:ZnSe laser[J].High Power Laser Science and Engineering,2021,第1期
  • Yu Zhu1,Zheng Liu1,Famin Yu1,Qiang Chen2,Wei Feng1,Zhanwen Zhang2,Zhigang Wang1(Institute of Atomic and Molecular Physics, Jilin University;Laser Fusion Research Center, China Academy of Engineering Physics).Mandrel degradation model of combined fast and slow processes[J].High Power Laser Science and Engineering,2021,第1期
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