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The all-diode-pumped laser system POLARIS——an experimentalist's tool generating ultra-high contrast pulses with high energy 被引量:1
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作者 Marco Hornung Hartmut Liebetrau +12 位作者 Andreas Seidel Sebastian Keppler Alexander Kessler Jrg Krner Marco Hellwing Frank Schorcht Diethard Klpfel Ajay K.Arunachalam Georg A.Becker Alexander Svert Jens Polz Joachim Hein Malte C.Kaluza 《High Power Laser Science and Engineering》 SCIE CAS 2014年第3期5-11,共7页
The development,the underlying technology and the current status of the fully diode-pumped solid-state laser system POLARIS is reviewed.Currently,the POLARIS system delivers 4 J energy,144 fs long laser pulses with an... The development,the underlying technology and the current status of the fully diode-pumped solid-state laser system POLARIS is reviewed.Currently,the POLARIS system delivers 4 J energy,144 fs long laser pulses with an ultra-high temporal contrast of 5 × 1012 for the ASE,which is achieved using a so-called double chirped-pulse amplification scheme and cross-polarized wave generation pulse cleaning.By tightly focusing,the peak intensity exceeds 3.5 × 1020 W cm-2.These parameters predestine POLARIS as a scientific tool well suited for sophisticated experiments,as exemplified by presenting measurements of accelerated proton energies.Recently,an additional amplifier has been added to the laser chain.In the ramp-up phase,pulses from this amplifier are not yet compressed and have not yet reached the anticipated energy.Nevertheless,an output energy of 16.6 J has been achieved so far. 展开更多
关键词 design high power laser laser amplifiers laser plasmas interaction laser systems modelling optimization ultra-intense ULTRASHORT pulse laser interaction with matter
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Influence of laser polarization on collective electron dynamics in ultraintense laser-foil interactions
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作者 Bruno Gonzalez-Izquierdo Ross J.Gray +16 位作者 Martin King Robbie Wilson Rachel J.Dance Haydn Powell David A.Mac Lellan John McCreadie Nicholas M.H.Butler Steve Hawkes James S.Green Chris D.Murphy Luca C.Stockhausen David C.Carroll Nicola Booth Graeme G.Scott Marco Borghesi David Neely Paul McKenna 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2016年第3期120-126,共7页
The collective response of electrons in an ultrathin foil target irradiated by an ultraintense(~6×10^(20)W cm^(-2)) laser pulse is investigated experimentally and via 3D particle-in-cell simulations. It is shown ... The collective response of electrons in an ultrathin foil target irradiated by an ultraintense(~6×10^(20)W cm^(-2)) laser pulse is investigated experimentally and via 3D particle-in-cell simulations. It is shown that if the target is sufficiently thin that the laser induces significant radiation pressure, but not thin enough to become relativistically transparent to the laser light, the resulting relativistic electron beam is elliptical, with the major axis of the ellipse directed along the laser polarization axis. When the target thickness is decreased such that it becomes relativistically transparent early in the interaction with the laser pulse, diffraction of the transmitted laser light occurs through a so called ‘relativistic plasma aperture', inducing structure in the spatial-intensity profile of the beam of energetic electrons. It is shown that the electron beam profile can be modified by variation of the target thickness and degree of ellipticity in the laser polarization. 展开更多
关键词 laser–plasmas interaction ultraintense ultrashort pulse laser interaction with matters
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组合激光辐照Q235钢靶的实验研究 被引量:4
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作者 焦路光 赵国民 陈敏孙 《红外与激光工程》 EI CSCD 北大核心 2011年第5期848-852,共5页
基于组合激光的新概念,采用1053nm脉冲激光、1064nm重频激光,实验上研究了组合激光对Q235钢靶的辐照效应。表面能谱分析和表面反射率测量结果表明:随着1053nm激光对钢靶辐照脉冲数目的增多,表面逐渐氧化,导致表面反射率降低;辐照脉冲数... 基于组合激光的新概念,采用1053nm脉冲激光、1064nm重频激光,实验上研究了组合激光对Q235钢靶的辐照效应。表面能谱分析和表面反射率测量结果表明:随着1053nm激光对钢靶辐照脉冲数目的增多,表面逐渐氧化,导致表面反射率降低;辐照脉冲数目增大到一定程度后,氧化反应完全,反射率不再发生明显变化。1064nm激光辐照钢靶的温度场测量结果表明:采用高功率脉冲激光对钢靶表面进行一定程度的预辐照,能够大幅提高目标靶对后续激光的吸收能力。 展开更多
关键词 激光与物质相互作用 组合激光 脉冲激光 反射率 温度场
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脉冲激光烧蚀铝合金靶的实验研究与数值模拟 被引量:3
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作者 焦路光 赵国民 陈敏孙 《激光与红外》 CAS CSCD 北大核心 2017年第7期799-802,共4页
通过实验测量与数值模拟的紧密结合,研究了毫秒级脉冲激光对铝合金板的烧蚀效应。实验研究方面,测量了1053 nm固体脉冲激光辐照下,铝合金单板的烧蚀过程及温升规律。数值模拟方面,采用完全喷射烧蚀模型,建立了金属靶温度变化及烧蚀的数... 通过实验测量与数值模拟的紧密结合,研究了毫秒级脉冲激光对铝合金板的烧蚀效应。实验研究方面,测量了1053 nm固体脉冲激光辐照下,铝合金单板的烧蚀过程及温升规律。数值模拟方面,采用完全喷射烧蚀模型,建立了金属靶温度变化及烧蚀的数值模型。数值模拟结果与实验结果相符较好,表明所建立的二维轴对称烧蚀模型可以近似描述实验中的烧蚀效应。本文建立的数值模型亦可推广至三维情形。 展开更多
关键词 激光与物质相互作用 1053 nm脉冲激光 烧蚀 数值计算
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金属/炸药结构在组合激光辐照下装药点火的数值模拟 被引量:1
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作者 焦路光 王嘉睿 杨在富 《激光杂志》 北大核心 2015年第10期84-86,共3页
基于组合激光的新概念,对重频脉冲激光与连续激光组合辐照下金属/炸药结构的温升、炸药的热点火规律进行了数值计算。根据一维热传导方程与炸药放热反应理论,考虑金属表面能量耦合系数及物性参数随温度的变化,计算了不同组合参数下金属... 基于组合激光的新概念,对重频脉冲激光与连续激光组合辐照下金属/炸药结构的温升、炸药的热点火规律进行了数值计算。根据一维热传导方程与炸药放热反应理论,考虑金属表面能量耦合系数及物性参数随温度的变化,计算了不同组合参数下金属/炸药结构的温升以及炸药的热点火时间,初步探讨了组合激光的优势。结果表明:在金属表面不发生相变的情形下,在连续激光中加入适当比例的重频脉冲激光,能够提高目标对激光能量的利用效率,增大目标的温升,加快炸药的点火。在平均功率密度相同时,辐照相同的金属/炸药结构使其点火,组合激光所需时间要比连续激光少,且随着金属层厚度的增大其优势更加明显。 展开更多
关键词 激光与物质相互作用 组合激光 脉冲激光 金属/炸药结构 装药点火
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1053nm脉冲激光对铝合金/水结构辐照效应 被引量:1
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作者 焦路光 赵国民 袁立国 《强激光与粒子束》 EI CAS CSCD 北大核心 2011年第3期627-631,共5页
使用1 053 nm脉冲激光分别辐照铝合金单板和铝合金/水结构,通过表面形貌观察、温度场分析、熔穿时间测量等手段,分析了水的存在对铝合金壳体烧蚀的影响。运用有限元软件ANSYS,建立了脉冲激光辐照下单板及结构温度变化的数值模型,计算了... 使用1 053 nm脉冲激光分别辐照铝合金单板和铝合金/水结构,通过表面形貌观察、温度场分析、熔穿时间测量等手段,分析了水的存在对铝合金壳体烧蚀的影响。运用有限元软件ANSYS,建立了脉冲激光辐照下单板及结构温度变化的数值模型,计算了铝合金表面熔凝区域的尺寸,并与实验结果进行了对比。结果表明:在相同的实验条件下,辐照8个激光脉冲时,铝合金单板即被熔穿,而辐照10个脉冲后铝合金/水结构仍未发生熔穿,且结构中铝合金表面的熔凝区域要小于单板情形中的熔凝区域,这表明水的存在对延缓铝合金板的烧蚀有较大的作用。对于单板情形,计算结果与实验结果符合较好,而对于铝合金/水结构情形,数值模拟放大了铝合金壳体的温升,这主要是因为数值模拟程序未考虑水的对流及沸腾换热对计算结果的影响。 展开更多
关键词 激光与物质相互作用 1053nm脉冲激光 铝合金/水结构 烧蚀 数值计算
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激光对羟基磷酸铜的还原机理研究 被引量:2
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作者 靳明明 刘若钰 +2 位作者 项徽清 刘建国 曾晓雁 《激光技术》 CAS CSCD 北大核心 2020年第2期148-155,共8页
为了研究激光选区金属化技术中,激光与尖晶石型化合物的相互作用机理,选用质优价廉、具有尖晶石结构的可见光和近红外光敏催化物质羟基磷酸铜(Cu 2(OH)PO 4)作为研究对象,利用X射线光电子能谱技术,探讨了波长为1064nm纳秒脉冲光纤激光... 为了研究激光选区金属化技术中,激光与尖晶石型化合物的相互作用机理,选用质优价廉、具有尖晶石结构的可见光和近红外光敏催化物质羟基磷酸铜(Cu 2(OH)PO 4)作为研究对象,利用X射线光电子能谱技术,探讨了波长为1064nm纳秒脉冲光纤激光、连续光纤激光和波长为355nm的纳秒脉冲紫外激光与羟基磷酸铜的相互作用机理。结果表明,3种激光都能将羟基磷酸铜中的+2价铜元素(Cu 2+)还原为+1价铜元素(Cu+),但还原过程随激光功率(0.13W^3.89W)或激光能量密度(2.76J/cm 2~25.48J/cm 2)的变化呈现不同的规律;结合羟基磷酸铜的热性能分析和紫外可见光吸收光谱分析,初步判断,在上述还原过程中,可能同时存在光热反应和光化学反应。该研究为羟基磷酸铜作为一种新型的激光活性物质提供了理论基础。 展开更多
关键词 激光技术 激光与物质相互作用 纳秒脉冲光纤激光 纳秒脉冲紫外激光 连续光纤激光 羟基磷酸铜
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Ultrafast laser processing of materials: from science to industry 被引量:50
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作者 Mangirdas Malinauskas Albertas Žukauskas +4 位作者 Satoshi Hasegawa Yoshio Hayasaki Vygantas Mizeikis Ričardas Buividas Saulius Juodkazis 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期548-561,共14页
Processing of materials by ultrashort laser pulses has evolved significantly over the last decade and is starting to reveal its scientific,technological and industrial potential.In ultrafast laser manufacturing,optica... Processing of materials by ultrashort laser pulses has evolved significantly over the last decade and is starting to reveal its scientific,technological and industrial potential.In ultrafast laser manufacturing,optical energy of tightly focused femtosecond or picosecond laser pulses can be delivered to precisely defined positions in the bulk of materials via two-/multi-photon excitation on a timescale much faster than thermal energy exchange between photoexcited electrons and lattice ions.Control of photoionization and thermal processes with the highest precision,inducing local photomodification in sub-100-nm-sized regions has been achieved.State-of-the-art ultrashort laser processing techniques exploit high 0.1–1μm spatial resolution and almost unrestricted three-dimensional structuring capability.Adjustable pulse duration,spatiotemporal chirp,phase front tilt and polarization allow control of photomodification via uniquely wide parameter space.Mature opto-electrical/mechanical technologies have enabled laser processing speeds approaching meters-per-second,leading to a fast lab-to-fab transfer.The key aspects and latest achievements are reviewed with an emphasis on the fundamental relation between spatial resolution and total fabrication throughput.Emerging biomedical applications implementing micrometer feature precision over centimeter-scale scaffolds and photonic wire bonding in telecommunications are highlighted. 展开更多
关键词 biomedical applications direct laser writing functional microdevices material processing nonlinear light–matter interaction 3D structuring ultrashort laser pulses
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Efficient offline production of freestanding thin plastic foils for laser-driven ion sources 被引量:1
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作者 Sebastian Seuferling Matthias Alexander Otto Haug +3 位作者 Peter Hilz Daniel Haffa Christian Kreuzer Jorg Schreiber 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2017年第2期8-12,共5页
Modern chirped pulse amplification laser systems with continuously improving controllability and increasing power are about to reach intensities of up to 10^(22) W cm^(-2) and have proven their potential to accelerate... Modern chirped pulse amplification laser systems with continuously improving controllability and increasing power are about to reach intensities of up to 10^(22) W cm^(-2) and have proven their potential to accelerate ions out of plasma to several tens percent of the speed of light. For enabling application, one important step is to increase the repetition rate at which ion bunches are at the disposal. In particular, techniques used so far for thin foil target production can require several days of preparing reasonable amounts for a single campaign. In this paper we describe the reasonably droplet method which we have tested and improved so that the emerging foils with thicknesses of a few nanometres up to micrometre can be used as targets for laser ion acceleration. Their quality and performance can compete with so far employed techniques thereby enabling the production of hundreds of targets per day. 展开更多
关键词 目标设计和制造和物质的超短波的脉搏激光相互作用
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脉冲激光辐照硅材料引起表面波纹的特性研究 被引量:12
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作者 袁永华 刘颂豪 +3 位作者 孙承纬 廖常俊 王伟平 张大勇 《光学学报》 EI CAS CSCD 北大核心 2004年第2期239-242,共4页
叙述了激光与材料相互作用过程中引起相干受激光散射的机制 ,以及形成材料表面波纹的特性。在激光波长 1.0 6 μm、能量 15mJ、光斑直径 2mm、脉冲半峰全宽约 10ns和入射方向为布儒斯特角的条件下 ,进行了脉冲激光辐照硅材料形成表面波... 叙述了激光与材料相互作用过程中引起相干受激光散射的机制 ,以及形成材料表面波纹的特性。在激光波长 1.0 6 μm、能量 15mJ、光斑直径 2mm、脉冲半峰全宽约 10ns和入射方向为布儒斯特角的条件下 ,进行了脉冲激光辐照硅材料形成表面波纹的实验研究。在脉冲激光辐照硅材料表面功率密度略大于材料损伤阈值的条件下 ,发现了硅材料表面形成的平行等间距直线条纹结构。用光学显微镜和原子力显微镜分别测量了被辐照硅材料表面的波纹形貌特征。在假设硅材料表面波纹的产生与声波在材料中的传播速度有关的条件下 ,由声波传播速度和激光辐照硅材料的脉冲宽度较好地解释了材料表面形成条纹的宽度 ,并认为在形成表面波纹的过程中 ,热应力起主要作用。 展开更多
关键词 脉冲激光辐照 硅材料 表面波纹 相干受激光散射 损伤阈值 压电效应 原子力显微镜 光学显微镜 脉冲宽度
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Performance of an elliptical crystal spectrometer for SGⅡX-ray opacity experiments 被引量:1
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作者 Ruirong Wang Honghai An +1 位作者 Zhiyong Xie Wei Wang 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第1期13-19,共7页
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 ... 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. 展开更多
关键词 high energy density physics inertial confinement fusion ultra-intense ultra-short pulse laser interaction with matters
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New scheme to trigger fusion in a compact magnetic fusion device by combining muon catalysis and alpha heating effects
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作者 S.D.Moustaizis P.Lalousis +3 位作者 H.Hora Z.Henis S.Eliezer I.Ploumistakis 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2016年第4期1-7,共7页
The application of laser pulses with psec or shorter duration enables nonthermal efficient ultrahigh acceleration of plasma blocks with homogeneous high ion energies exceeding ion current densities of 10^(12) A cm^(-2... The application of laser pulses with psec or shorter duration enables nonthermal efficient ultrahigh acceleration of plasma blocks with homogeneous high ion energies exceeding ion current densities of 10^(12) A cm^(-2). The effects of ultrahigh acceleration of plasma blocks with high energy proton beams are proposed for muon production in a compact magnetic fusion device. The proposed new scheme consists of an ignition fusion spark by muon catalyzed fusion(μCF) in a small mirror-like configuration where low temperature D–T plasma is trapped for a duration of 1 μs. This initial fusion spark produces sufficient alpha heating in order to initiate the fusion process in the main device. The use of a multi-fluid global particle and energy balance code allows us to follow the temporal evolution of the reaction rate of the fusion process in the device. Recent progress on the ICAN and IZEST projects for high efficient high power and high repetition rate laser systems allows development of the proposed device for clean energy production. With the proposed approaches,experiments on fusion nuclear reactions and μCF process can be performed in magnetized plasmas in existing kJ/PW laser facilities as the GEKKO-LFEX, the PETAL and the ORION or in the near future laser facilities as the ELI-NP Romanian pillar. 展开更多
关键词 alpha heating effect high energy density physics laser plasmas interaction laser proton acceleration high energy density physics muon catalyzed fusion ultra-intense ultra-short pulse laser interaction with matters
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Review on TNSA diagnostics and recent developments at SPARC LAB
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作者 Fabrizio Bisesto Mario Galletti +5 位作者 Maria Pia Anania Massimo Ferraro Riccardo Pompili Mordechai Botton Elad Schleifer Arie Zigler 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2019年第3期228-239,共12页
Interaction between high-intensity lasers with solid targets is the key process in a wide range of novel laser-based particle accelerator schemes,as well as electromagnetic radiation sources.Common to all the processe... Interaction between high-intensity lasers with solid targets is the key process in a wide range of novel laser-based particle accelerator schemes,as well as electromagnetic radiation sources.Common to all the processes is the generation of femtosecond pulses of relativistic electrons emitted from the targets as forerunners of the later-time principal products of the interaction scheme.In this paper,some diagnostics employed in laser–solid matter interaction experiments related to electrons,protons,ions,electromagnetic pulses(EMPs)and X-rays are reviewed.Then,we present our experimental study regarding fast electrons and EMPs utilizing a femtosecond-resolution detector previously adopted only in accelerator facilities. 展开更多
关键词 high power laser laser-PLASMA interaction pulsed electric field diagnostic ultra-short high-intensity laser pulseS
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