1.
Ultrafast Excitation of an Inner-Shell Electron by Laser-Induced E..
[1398]
|
2.
Characterization of Electromagnetic Pulses Generated from Plasma A..
[1213]
|
3.
Optimization of Electron Beams Based on Plasma-Density Modulation ..
[1168]
|
4.
Acceleration of 60 MeV proton beams in the commissioning experimen..
[1153]
|
5.
Measurement of electron beam transverse slice emittance using a fo..
[1004]
|
6.
Spin Filter for Polarized Electron Acceleration in Plasma Wakefiel..
[1003]
|
7.
Coherent surface plasmon polariton amplification via free-electron..
[993]
|
8.
High Energy and Broad Bandwidth Ti: Sapphire Chirped Pulse Amplifi..
[991]
|
9.
Electron Motion Control in HHG Process with Multi-Color Laser Fiel..
[966]
|
10.
High efficiency laser-driven proton sources using 3D-printed micro..
[951]
|
11.
Improving the accuracy of hard photon emission by sigmoid sampling..
[936]
|
12.
Investigating group-velocity-tunable propagation-invariant optical..
[932]
|
13.
On the upper limit of laser intensity attainable in nonideal vacuu..
[924]
|
14.
Proton acceleration with multi-peak energy spectra tailored by vor..
[919]
|
15.
Direct acceleration of an annular attosecond electron slice driven..
[906]
|
16.
Self-generated magnetic collimation mechanism driven by ultra-inte..
[892]
|
17.
Robust Subwavelength Single-Mode Perovskite Nanocuboid Laser
[878]
|
18.
Robust and ultralow-energy-threshold ignition of a lean mixture by..
[878]
|
19.
Ultrafast dynamics of helical Dirac fermions in the topological in..
[862]
|
20.
Dual-color gamma-rays via all-optical Compton scattering from a ca..
[856]
|
21.
Strong double space-time wave packets using optical parametric amp..
[853]
|
22.
339 J high-energy Ti:sapphire chirped-pulse amplifier for 10 PW la..
[848]
|
23.
Mapping non-laminar proton acceleration in laser-driven target nor..
[835]
|
24.
Energy Enhancement and Energy Spread Compression of Electron Beams..
[829]
|
25.
Controlled injection using a channel pinch in a plasma-channel-gui..
[816]
|
26.
Exploring vacuum birefringence based on a 100 PW laser and an x-ra..
[799]
|
27.
Bright High-Harmonic Generation through Coherent Synchrotron Emiss..
[794]
|
28.
Parasitic lasing in large aperture Ti: sapphire chirped pulse ampl..
[792]
|
29.
Long-distance characterization of high-quality laser-wakefield-acc..
[792]
|
30.
Polarized electron-beam acceleration driven by vortex laser pulses
[791]
|
31.
Optimization of gas-filled quartz capillary discharge waveguide fo..
[790]
|
32.
Improvement of the focusing ability by double deformable mirrors f..
[788]
|
33.
Ultralow-emittance measurement of high-quality electron beams from..
[787]
|
34.
200 J high efficiency Ti:sapphire chirped pulse amplifier pumped b..
[779]
|
35.
High energy and broad bandwidth Ti:sapphire chirped pulse amplifie..
[779]
|
36.
Review of Quality Optimization of Electron Beam Based on Laser Wak..
[774]
|
37.
Optimization for high-energy and high-efficiency broadband optical..
[767]
|
38.
Four-Outputs Nd:glass Pump Source for Large Aperture Ti:Sapphire A..
[766]
|
39.
Topological structure effects of Laguerre-Gaussian laser on self-c..
[758]
|
40.
Enhanced laser-driven backward proton acceleration using micro-wir..
[752]
|
41.
Coherent beam combination of multiple beams based on near-field an..
[750]
|
42.
Femtosecond infrared optical vortex lasers based on optical parame..
[749]
|
43.
Enhanced betatron radiation by steering a laser-driven plasma wake..
[745]
|
44.
Measurement of the matched spot size in a capillary discharge wave..
[742]
|
45.
激光触发不同环境气体氛围中高压开关系统
[742]
|
46.
A full-path phasing technique based on the far-field interference ..
[741]
|
47.
High-order dispersion control of 10-petawatt Ti:sapphire laser fac..
[740]
|
48.
Hybrid capillary discharge waveguide for laser wakefield accelerat..
[740]
|
49.
Trends in ultrashort and ultrahigh power laser pulses based on opt..
[739]
|
50.
Temporal dual-pulse pumped Ti:Sapphire Amplilier
[738]
|
51.
Faraday-rotation self-interference method for electron beam durati..
[737]
|
52.
Coherent X-ray source generation with off-resonance laser modulati..
[736]
|
53.
基于激光等离子体加速的自由电子激光研究新进展
[730]
|
54.
High-gradient modulation of microbunchings using a minimized syste..
[729]
|
55.
High-Brightness High-Energy Electron Beams from a Laser Wakefield ..
[728]
|
56.
Femtosecond-laser-driven wire-guided helical undulator for intense..
[726]
|
57.
Harmonic spectra bandwidth broadening with a new polarization gati..
[725]
|
58.
Dispersion effects on performance of free-electron laser based on ..
[725]
|
59.
Fluorescence Intensity and Photon Dynamic Treatment Enhancement of..
[723]
|
60.
Sharp plasma pinnacle structure based on shockwave for an improved..
[710]
|
61.
Polarized electron acceleration in beam-driven plasma wakefield ba..
[703]
|
62.
High-precision active synchronization control of high-power, tiled..
[697]
|
63.
Selective Enhancement of a Single Harmonic Emission in a Driving L..
[688]
|
64.
Polaron mobility modulation by bandgap engineering in black phase ..
[678]
|
65.
High-order harmonic generation from zigzag graphene nanoribbons
[677]
|
66.
Two-beam coherent combining based on Ti:sapphire chirped-pulse amp..
[669]
|
67.
Hollow Plasma Acceleration Driven by a Relativistic Reflected Holl..
[661]
|
68.
A broadband low-chromatic-aberration single grating Offner stretch..
[660]
|
69.
Polarization-dependent fast-electron emission in high-temporal-con..
[654]
|
70.
Goldilocks focal zone in femtosecond laser ignition of lean fuels
[654]
|
71.
Phasing methods of tiled-aperture coherent beam combining for high..
[650]
|
72.
Reliable laser ablation ignition of combustible gas mixtures by fe..
[644]
|
73.
Free-electron lasing at 27 nanometres based on a laser wakefield a..
[624]
|
74.
Collimated electron sheet driven by an intense Laguerre-Gaussian p..
[623]
|
75.
Coherent beam combination far-field measuring method based on ampl..
[611]
|
76.
Coherent harmonic generation using off-resonance laser modulation ..
[610]
|
77.
Hot Carrier Transfer in a Graphene/PtSe2 Heterostructure Tuned by ..
[606]
|
78.
Laser-driven radiation-reaction effect and polarized particle acce..
[601]
|
79.
Subwavelength-Polarized Quasi-Two-Dimensional Perovskite Single-Mo..
[595]
|
80.
Guiding and emission of milijoule single-cycle THz pulse from lase..
[586]
|
81.
All-optical edge-enhanced proton imaging driven by an intense vort..
[585]
|
82.
1 μm few-cycle pulse generation in a single-stage gas-filled holl..
[577]
|
83.
The 1 PW/0.1 Hz laser beamline in SULF facility
[575]
|
84.
Bright high harmonic generation around 30 nm and 10 nm for seeding..
[573]
|
85.
Intense single-cycle terahertz generation driven by ultrashort hig..
[573]
|
86.
Observation of Refractive Index Line Shape in Ultrafast XUV Transi..
[558]
|
87.
Circularly polarized attosecond pulses generation from laser inter..
[557]
|
88.
一种超高真空腔体中残留液体样品的收集装置
[555]
|
89.
Three-dimensional dynamic optical trapping using non-iterative com..
[553]
|
90.
Direct mapping of attosecond electron dynamics
[550]
|
91.
High-order harmonic generation in an x-ray range from laser-induce..
[548]
|
92.
High-quality laser wakefield electron accelerator
[547]
|
93.
Near-GeV Electron Beams at a Few Per-Mille Level from a Laser Wake..
[542]
|
94.
Generation and application of high-contrast laser pulses using pla..
[541]
|
95.
Impact of laser parameters onattainable upper limit of laser inten..
[534]
|
96.
Further Development of the Short-Pulse Petawatt Laser: Trends, Tec..
[526]
|
97.
Cascaded solenoid acceleration of vortex laser-driven collimated p..
[526]
|
98.
激光参数对非理想真空激光光强极限的影响
[518]
|
99.
超强激光驱动的辐射反作用力效应与极化粒子加速
[507]
|
100.
Simulating spatiotemporal dynamics of ultra-intense ultrashort las..
[496]
|