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Anisotropic dewetting polydimethylsiloxane surface fabricated using ultrashort laser pulses
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作者 泮怀海 骆芳芳 +1 位作者 林耿 赵全忠 《Chinese Optics Letters》 SCIE EI CAS CSCD 2015年第3期46-50,共5页
Anisotropic dewetting polydimethylsiloxane (PDMS) surfaces, which consist of groove-like micro/ nanostructures (so-called hierarchical structures), are fabricated using an ultrashort pulsed laser. The contact angl... Anisotropic dewetting polydimethylsiloxane (PDMS) surfaces, which consist of groove-like micro/ nanostructures (so-called hierarchical structures), are fabricated using an ultrashort pulsed laser. The contact angles (CAs) are measured parallel to the microgrooves, which are always larger than those measured perpendicular to the microgrooves, exhibiting a superhydrophobic anisotropy of approximately 4°on these fabricated PDMS surfaces at optimized parameters. These pulsed-laser irradiated surfaces exhibit enhanced hydrophobicity with CAs that increase from 116°to 156°while preserving the anisotropic dewetting. Additionally, the wettability of the surfaces with different morphologies is investigated. The temporal evolution of the wettability of the pulsed-laser irradiated PDMS surface is also observed within the first few hours after pulsed laser irradiation. 展开更多
关键词 PDMS Anisotropic dewetting polydimethylsiloxane surface fabricated using ultrashort laser pulses
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Adaptive split-step Fourier method for simulating ultrashort laser pulse propagation in photonic crystal fibres 被引量:3
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作者 李曙光 邢光龙 +5 位作者 周桂耀 韩颖 侯蓝田 胡明列 栗岩锋 王清月 《Chinese Physics B》 SCIE EI CAS CSCD 2006年第2期437-443,共7页
In this paper, the generalized nonlinear Schrodinger equation (GNLSE) is solved by an adaptive split-step Fourier method (ASSFM). It is found that ASSFM must be used to solve GNLSE to ensure precision when the sol... In this paper, the generalized nonlinear Schrodinger equation (GNLSE) is solved by an adaptive split-step Fourier method (ASSFM). It is found that ASSFM must be used to solve GNLSE to ensure precision when the soliton selffrequency shift is remarkable and the photonic crystal fibre (PCF) parameters vary with the frequency considerably. The precision of numerical simulation by using ASSFM is higher than that by using split-step Fourier method in the process of laser pulse propagation in PCFs due to the fact that the variation of fibre parameters with the peak frequency in the pulse spectrum can be taken into account fully. 展开更多
关键词 photonic crystal fibre ultrashort laser pulse propagation adaptive split-step Fourier method
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Control of photoassociation reaction F+H →HF with ultrashort laser pulse
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作者 刘俐 牛英煜 +1 位作者 元凯军 丛书林 《Chinese Physics B》 SCIE EI CAS CSCD 2007年第10期2957-2961,共5页
The laser-induced vibrational state-selectivity of product HF in photoassociation reaction H+F→HF is theoret- ically investigated by using the time-dependent quantum wave packet method. The population transfer proce... The laser-induced vibrational state-selectivity of product HF in photoassociation reaction H+F→HF is theoret- ically investigated by using the time-dependent quantum wave packet method. The population transfer process from the continuum state down to the bound vibrational states can be controlled by the driving laser. The effects of laser pulse parameters and the initial momentum of the two collision atoms on the vibrational population of the product HF are discussed in detail. Photodissociation accompanied with the photoassociation process is also described. 展开更多
关键词 ultrashort laser pulse photoassociation reaction vibrational state-selectivity
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Coulomb expansion of deuterated methane clusters irradiated by an ultrashort intense laser pulse
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作者 李洪玉 刘建胜 +3 位作者 王成 倪国权 李儒新 徐至展 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第4期1237-1241,共5页
The simulations of three-dimensional particle dynamics show that when irradiated by an ultrashort intense laser pulse, the deuterated methane cluster expands and the majority of deuterons overrun the more slowly expan... The simulations of three-dimensional particle dynamics show that when irradiated by an ultrashort intense laser pulse, the deuterated methane cluster expands and the majority of deuterons overrun the more slowly expanding carbon ions, resulting in the creation of two separated subelusters. The enhanced deuteron kinetic energy and a narrow peak around the energy maximum in the deuteron energy distribution make a considerable contribution to the efficiency of nuclear fusion compared with the ease of homonuelear deuterium clusters. With the intense laser irradiation, the nuclear fusion yield increases with the increase of the cluster size, so that deuterated heteronuelear clusters with larger sizes are required to achieve a greater neutron yield. 展开更多
关键词 deuterated methane cluster ultrashort intense laser pulse Coulomb explosion nuclear fusion
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Intense Cherenkov-type terahertz electromagnetic radiation from ultrafast laser-plasma interaction 被引量:1
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作者 胡强林 刘世炳 李维 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第3期1050-1054,共5页
A Cherenkowtype terahertz electromagnetic radiation is revealed, which results efficiently from the collective effects in the time-domain of ultrafast pulsed electron current produced by ultrafast intense laser plasma... A Cherenkowtype terahertz electromagnetic radiation is revealed, which results efficiently from the collective effects in the time-domain of ultrafast pulsed electron current produced by ultrafast intense laser plasma interaction. The emitted pulse waveform and spectrum, and the dependence of laser pulse parameters on the structure of the radiation field are investigated numerically. The condition of THz radiation generation in this regime and Cherenkov geometry of the radiation field are studied analytically. 展开更多
关键词 terahertz radiation CHERENKOV ultrashort pulse laser PLASMA
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Standing Ultrashort Relativistic Solitons in Overdense Plasmas
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作者 方宗豹 沈百飞 张正泉 《Plasma Science and Technology》 SCIE EI CAS CSCD 2006年第6期649-652,共4页
By using a one-dimensional self-consistent relativistic fluid model, an investigation is made numerically on relativistic electromagnetic solitons with a high intensity in cold overdense plasmas with an electrons' in... By using a one-dimensional self-consistent relativistic fluid model, an investigation is made numerically on relativistic electromagnetic solitons with a high intensity in cold overdense plasmas with an electrons' initial velocity opposite to the laser propagating direction. Two types of standing solitons with zero group velocity are found at the given electrons' initial velocities. One is single-humped with a weakly relativistic intensity; the another is multi-humped with a strong relativistic amplitude. The properties of these two types of solitons are presented in detail. 展开更多
关键词 SOLITON ultrashort laser pulse PLASMA fluid model
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Intra-cycle depolarization of ultraintense laser pulses focused by off-axis parabolic mirrors 被引量:1
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作者 Luca Labate Gianluca Vantaggiato Leonida A.Gizzi 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2018年第2期141-148,共8页
A study of the structure of the electric and magnetic fields of ultraintense laser pulses focused by an off-axis parabolic mirror is reported. At first, a theoretical model is laid out, whose final equations integrati... A study of the structure of the electric and magnetic fields of ultraintense laser pulses focused by an off-axis parabolic mirror is reported. At first, a theoretical model is laid out, whose final equations integration allows the space and time structure of the fields to be retrieved. The model is then employed to investigate the field patterns at different times within the optical cycle, for off-axis parabola parameters normally employed in the context of ultraintense laser–plasma interaction experiments. The results show that nontrivial, complex electromagnetic field patterns are observed at the time at which the electric and magnetic fields are supposed to vanish. The importance of this effect is then studied for different laser polarizations, f numbers and off-axis angles. 展开更多
关键词 laser-driven particle acceleration laser focusing off-axis parabolic mirrors ultrashort laser pulses
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Few-cycle relativistic solitons in plasmas
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作者 方宗豹 沈百飞 +1 位作者 成纯富 张晓梅 《Chinese Physics B》 SCIE EI CAS CSCD 2005年第9期1850-1855,共6页
A set of exact one-dlmensional solutions to coupled nonlinear equations describing the propagation of a relativistic ultrashort circularly polarized laser pulse in a cold collisionless and bounded plasma where electro... A set of exact one-dlmensional solutions to coupled nonlinear equations describing the propagation of a relativistic ultrashort circularly polarized laser pulse in a cold collisionless and bounded plasma where electrons have an initial velocity in the laser propagating direction is presented. The solutions investigated here are in the form of quickly moving envelop solitons at a propagation velocity comparable to the light speed. The features of solitons in both underdense and overdense plasmas with electrons having different given initial velocities in the laser propagating direction are described. It is found that the amplitude of solitons is larger and soliton width shorter in plasmas where electrons have a larger initial velocity. In overdense plasmas, soliton duration is shorter, the amplitude higher than that in underdense plasmas where electrons have the same initial velocity. 展开更多
关键词 SOLITON ultrashort laser pulse PLASMA fluid model
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Effect of Ultrashort Pulsed Laser and X-Ray Irradiation on Au^+ -Doped Glass
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作者 Huidan Zeng, Jianrong Qiu, Xiongwei Jiang, Congshan Zhu and Fuxi Gan(Photon Craft Project, Shanghai Institute of Optics and Fine Mechanics, CAS, P. R. China, Tel: 86-21 -59911897, Fax: 86-21-59929373, E-mail: zenghuidan@mail.siom.ac.cn) 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期112-113,共2页
Au nanoparticles were precipitated inside Au+-doped glass samples after irradiation by femtosecond laser or x-ray. Femtosecond laser and X-ray irradiation result in decreasing of anneal temperature and critical size f... Au nanoparticles were precipitated inside Au+-doped glass samples after irradiation by femtosecond laser or x-ray. Femtosecond laser and X-ray irradiation result in decreasing of anneal temperature and critical size for the precipitation of Au nanoparticles. 展开更多
关键词 of AS were Effect of ultrashort Pulsed laser and X-Ray Irradiation on Au Doped Glass into for DEL on APPI
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Quantum path control using attosecond pulse trains via UV-assisted resonance enhance ionization
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作者 李芳 魏来 何志聪 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第4期148-153,共6页
We theoretically investigate the quantum path selection in an ultraviolet (UV)-assisted near-infrared field with an UV energy below the ionization threshold. By calculating the ionization probability with different ... We theoretically investigate the quantum path selection in an ultraviolet (UV)-assisted near-infrared field with an UV energy below the ionization threshold. By calculating the ionization probability with different assistant UV frequencies, we find that a resonance-enhanced ionization peak emerges in the region Euv 〈 Ip, where Euv is the photon energy and Ip is the ionization energy. With an attosecond pulse train (APT) centered in the resonance region, we show that the short quantum path can be well selected in the continuum case. By performing the electron trajectory analysis, we have further explained the physical mechanism of the quantum path selection. Moreover, we also demonstrate that in the resonance region, the harmonic emission from the selected paths is more efficient than that with the APT energy above the ionization threshold. 展开更多
关键词 ultrashort laser pulse attosecond pulse quantum path
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Effect of ballistic electrons on ultrafast thermomechanical responses of a thin metal film
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作者 熊启林 田昕 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第9期365-370,共6页
The ultrafast thermomechanical coupling problem in a thin gold film irradiated by ultrashort laser pulses with different electron ballistic depths is investigated via the ultrafast thermoelasticity model. The solution... The ultrafast thermomechanical coupling problem in a thin gold film irradiated by ultrashort laser pulses with different electron ballistic depths is investigated via the ultrafast thermoelasticity model. The solution of the problem is obtained by solving finite element governing equations. The comparison between the results of ultrafast thermomechanical coupling responses with different electron ballistic depths is made to show the ballistic electron effect. It is found that the ballistic electrons have a significant influence on the ultrafast thermomechanical coupling behaviors of the gold thin film and the best laser micromachining results can be achieved by choosing the specific laser technology(large or small ballistic range).In addition, the influence of simplification of the ultrashort laser pulse source on the results is studied, and it is found that the simplification has a great influence on the thermomechanical responses, which implies that care should be taken when the simplified form of the laser source term is applied as the Gaussian heat source. 展开更多
关键词 ultrafast thermomechanical coupling ballistic electrons ultrashort laser pulse finite element method
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Pulse shape of ultrashort intense laser reflected from a plasma mirror
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作者 葛绪雷 远晓辉 +7 位作者 方远 魏文青 杨骕 刘峰 陈民 赵利 盛政明 张杰 《Chinese Optics Letters》 SCIE EI CAS CSCD 2018年第10期85-89,共5页
The temporal profiles of high-power short-pulse lasers reflected from self-induced plasma mirrors(PMs) were measured with high temporal resolution in the sub-picosecond window. The leading front shape of the laser p... The temporal profiles of high-power short-pulse lasers reflected from self-induced plasma mirrors(PMs) were measured with high temporal resolution in the sub-picosecond window. The leading front shape of the laser pulse is found to depend sensitively on the laser fluence on the PM surface. Spectral modulation plays a key role in pulse profile shaping. Our findings will extend our knowledge on properly using PMs. 展开更多
关键词 Pulse shape of ultrashort intense laser reflected from a plasma mirror PM
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Ultrafast laser processing of materials: from science to industry 被引量:49
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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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Spatiotemporal rotational dynamics of laser-driven molecules 被引量:4
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作者 Kang Lin Ilia Tutunnikov +6 位作者 Junyang Ma Junjie Qiang Lianrong Zhou Olivier Faucher Yehiam Prior Ilya Sh.Averbukh Jian Wu 《Advanced Photonics》 EI CSCD 2020年第2期18-38,共21页
Molecular alignment and orientation by laser fields has attracted significant attention in recent years,mostly due to new capabilities to manipulate the molecular spatial arrangement.Molecules can now be efficiently p... Molecular alignment and orientation by laser fields has attracted significant attention in recent years,mostly due to new capabilities to manipulate the molecular spatial arrangement.Molecules can now be efficiently prepared for ionization,structural imaging,orbital tomography,and more,enabling,for example,shooting of dynamic molecular movies.Furthermore,molecular alignment and orientation processes give rise to fundamental quantum and classical phenomena like quantum revivals,Anderson localization,and rotational echoes,just to mention a few.We review recent progress on the visualization,coherent control,and applications of the rich dynamics of molecular rotational wave packets driven by laser pulses of various intensities,durations,and polarizations.In particular,we focus on the molecular unidirectional rotation and its visualization,the orientation of chiral molecules,and the three-dimensional orientation of asymmetric-top molecules.Rotational echoes are discussed as an example of nontrivial dynamics and detection of prepared molecular states. 展开更多
关键词 ultrashort laser pulses alignment and orientation molecular unidirectional rotation rotational echoes
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Targets with cone-shaped microstructures from various materials for enhanced high-intensity laser-matter interaction 被引量:2
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作者 Tina Ebert RenéHeber +3 位作者 Torsten Abel Johannes Bieker Gabriel Schaumann and Markus Roth 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2021年第2期168-173,共6页
Targets with microstructured front surfaces have shown great potential in improving high-intensity laser–matter interaction.We present cone-shaped microstructures made out of silicon and titanium created by ultrashor... Targets with microstructured front surfaces have shown great potential in improving high-intensity laser–matter interaction.We present cone-shaped microstructures made out of silicon and titanium created by ultrashort laser pulse processing with different characteristics.In addition,we illustrate a process chain based on moulding to recreate the laser-processed samples out of polydimethylsiloxane,polystyrol and copper.With all described methods,samples of large sizes can be manufactured,therefore allowing time-efficient,cost-reduced and reliable ways to fabricate large quantities of identical targets. 展开更多
关键词 microstructured targets MOULDING particle acceleration ultrashort laser pulse processing X-ray generation
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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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Highly efficient transient stimulated Raman scattering on secondary vibrational mode of BaWO_(4) crystal due to its constructive interference with self-phase modulation
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作者 Igor Kinyaevskiy Valeri Kovalev +4 位作者 Pavel Danilov Nikita Smirnov Sergey Kudryashov Andrey Koribut Andrey Ionin 《Chinese Optics Letters》 SCIE EI CAS CSCD 2023年第3期113-117,共5页
An exceptionally high stimulated Raman scattering[SRS]conversion efficiency to the first Stokes component associated with the secondary[low-frequency and low intensity]vibrational mode v2[~330 cm^[-1]]was observed in ... An exceptionally high stimulated Raman scattering[SRS]conversion efficiency to the first Stokes component associated with the secondary[low-frequency and low intensity]vibrational mode v2[~330 cm^[-1]]was observed in a BaWO4 crystal in a highly transient regime of interaction.The effect takes place in the range of pump pulse energy from~0.1 to~0.5μJ with maximum energy conversion efficiency up to 35%at 0.2μJ.The nature of the observed effects is explained by interference of SRS and self-phase modulation,where the latter is related to a noninstantaneous orientational Kerr nonlinearity in the BaWO4 crystal. 展开更多
关键词 stimulated Raman scattering secondary vibrational mode self-phase modulation ultrashort laser pulses transient phenomena
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Simultaneous observation of ultrafast electron and proton beams in TNSA 被引量:1
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作者 Fabrizio Bisesto Mario Galletti +8 位作者 Maria Pia Anania Gemma Costa Massimo Ferrario Riccardo Pompili Arie Zigler Fabrizio Consoli Mattia Cipriani Martina Salvadori Claudio Verona 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2020年第2期147-152,共6页
The interaction of ultra-intense high-power lasers with solid-state targets has been largely studied for the past 20 years as a future compact proton and ion source.Indeed,the huge potential established on the target ... The interaction of ultra-intense high-power lasers with solid-state targets has been largely studied for the past 20 years as a future compact proton and ion source.Indeed,the huge potential established on the target surface by the escaping electrons provides accelerating gradients of TV/m.This process,called target normal sheath acceleration,involves a large number of phenomena and is very difficult to study because of the picosecond scale dynamics.At the SPARC LAB Test Facility,the high-power laser FLAME is employed in experiments with solid targets,aiming to study possible correlations between ballistic fast electrons and accelerated protons.In detail,we have installed in the interaction chamber two different diagnostics,each one devoted to characterizing one beam.The first relies on electro-optic sampling,and it has been adopted to completely characterize the ultrafast electron components.On the other hand,a time-of-flight detector,based on chemical-vapour-deposited diamond,has allowed us to retrieve the proton energy spectrum.In this work,we report preliminary studies about simultaneous temporal resolved measurements of both the first forerunner escaping electrons and the accelerated protons for different laser parameters. 展开更多
关键词 electro-optic sampling diagnostics high-power laser laser-plasma interaction time-of-flight diagnostics target normal sheath acceleration ultrashort high-intensity laser pulses
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