共查询到20条相似文献,搜索用时 62 毫秒
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采用短脉冲强激光辐照固体双层薄靶的方式对质子束的产生及质子束角分布开展了实验研究。在SILEX-Ⅰ短脉冲激光装置上利用脉宽为30 fs的强激光辐照背面镀有CH膜的金膜靶,在距离靶背3.3 cm处采用CR39记录靶背出射的质子角分布。通过分析靶背出射质子的角分布,研究了激光功率密度和对比度对质子加速机制的影响。研究结果表明:占主导地位的质子产生和加速机制对激光预脉冲比较敏感。激光预脉冲较弱时,靶背壳电场加速机制占主导地位;当激光预脉冲较强时,靶前加速机制占主导地位。此外,还对导致质子环形分布的磁场大小进行了估算。 相似文献
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本文给出了利用汤姆逊(Thomson)离子谱仪测量超短超强激光与等离子体相互作用中产生的高能质子能谱的一种方法.该方法是利用Thomson离子谱仪(平均磁场强度为0.167 T,电场加高压为3000 V,电场强度约为0.429 MV/m)和固体核径迹探测器CR39相结合,在固体靶背表面测量了激光的高能质子能谱.结果显示:质子沿着靶背法线方向发射,质子在一定能量处出现截止,截止能量与靶厚度和靶材料密切相关.分析认为,靶法线鞘层加速(TNSA)机制是质子能谱分布及能量截止的主要原因. 相似文献
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在相对论激光强度下,对p偏振30 fs激光与固体Cu靶相互作用中产生的Kα射线进行了实验研究.采用刀边成像技术和单光子计数X射线CCD相结合的探测装置,在单发激光脉冲打靶时同时得到X射线源的尺寸、能谱以及Kα光子的转换效率等多种信息.实验结果与Reich等人的理论计算结果有明显的差异,Kα光子的能量转换效率在激光功率密度为1.6×1018W/cm2的条件下达到最大值7.08×10-6/sr.根据这一结果并结合蒙特卡罗程序,推断出在这一聚焦光强下激光能量转换为前向超热电子的效率约为10%. 相似文献
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发散角过大是制约超强激光与固体靶相互作用加速产生高能质子束应用的一个重大物理难题.本文提出了一种结构化的通道靶型,与超强激光相互作用可提高质子束的发散特性,通道壁上产生的横向电荷分离静电场可对质子有效聚焦.采用二维particle-in-cell粒子模拟程序对激光通道靶相互作用过程进行了研究,分析了加速质子束的性能特点.模拟结果表明,与传统平面靶相比,通道靶可以在不过多损失能量的情况下产生具有更好准直性的质子束,尤其当通道靶的直径与激光焦斑尺寸和质子源尺寸相当时,横向静电场能够有效聚焦质子束,并且可保证相对较高的激光能量利用率. 相似文献
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The dephasing time of a positron in the total field associated with a laser pulse in a plasma J28is studied numerically. It is shown that the dynamics of the positron is quite different from that of an electron due to the electrostatic potential in the body of the pulse. The dephasing time of the positron increases with the pulse length and decreases with the pulse intensity nonlinearly. In the long pulse case (L》λp) the dephasing time is proportional to the pulse length. These results provide a scientific basis for experiments to observe the positron acceleration scheme, and may be important to the physics of laser-article interactions in multi-component plasmas. 相似文献
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在相对论激光强度下,对p偏振30 fs激光与固体Cu靶相互作用中产生的Kα射线进行了实验研究.采用刀边成像技术和单光子计数X射线CCD相结合的探测装置,在单发激光脉冲打靶时同时得到X射线源的尺寸、能谱以及Kα光子的转换效率等多种信息.实验结果与Reich等人的理论计算结果有明显的差异,Kα光子的能量转换效率在激光功率密度为1.6×1018W/cm2的条件下达到最大值7.08×10-6/sr.根据这一结果并结合蒙特卡罗程序,推断出在这一聚焦光强下激光能量转换为前向超热电子的效率约为10%. 相似文献
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Single or/and multipeak solitons in plasma under relativistic electromagnetic field are reviewed. The incident electromagnetic
field is allowed to have a zero or/and nonzero initial constant amplitude. Some interesting numerical results are obtained
that include a high-number multipeak laser pulse and single or/and low-number multipeak plasma wake structures. It is also
shown that there exists a combination of soliton and oscillation waves for plasma wake field. Also, the electron density exhibits
multi-caviton structure or the combination of caviton and oscillation. A complete eigenvalue spectrum of parameters is given
wherein some higher peak numbers of multipeak electromagnetic solitons in the plasma are included. Moreover, some interesting
scaling laws are presented for field energy via numerical approaches. Some implications of results are discussed.
相似文献
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Wu Zhao-Hui Wei Xiao-Feng Zuo Yan-Lei Liu Lan-Qin Zhang Zhi-Meng Li Min Zhou Yu-Liang Su Jing-Qin 《中国物理 B》2015,24(1):14211-014211
Chirped wideband pump and seed pulses are usually considered for backward Raman amplification(BRA)in plasmas to achieve an extremely high-power laser pulse.However,current theoretical models only contain either a chirped pump or a chirped seed.In this paper,modified three-wave coupling equations are proposed for the BRA in the plasmas with both chirped wideband pump and seed.The simulation results can more precisely describe the experiments,such as the Princeton University experiment.The optimized chirp and bandwidth are determined based on the simulation to enhance the output intensity and efficiency. 相似文献
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超短超强激光脉冲在气体等离子体中激发的尾波场加速在过去40年里有了长足的发展,人们已经在厘米加速距离内获得了数GeV的准单能电子加速,激光尾波加速的最高电子能量已经达到8 GeV.为了进一步提升加速电子束的稳定性和品质,多种电子注入方式先后被提出.本文研究了基于锐真空-等离子体边界面的密度跃变注入,着重讨论了不同角度的倾斜边界面对注入电子品质的影响.二维粒子模拟研究表明,与倾角为0°的垂直边界面相比,在合适的倾斜边界角下,第二个尾波空泡内产生的注入电量可以有近三倍的提升,同时偏振方向与入射面平行的驱动激光可以增加第一个空泡内注入电子的电量.根据不同激光入射角度时尾波场中电子自注入的起始位置差异,分析了电子电量与横向振荡增强的原因.这些研究有利于提升基于Betatron运动的尾波场辐射及其应用. 相似文献
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Proton acceleration using high-intensity laser pulses, at 1016 W/cm2 was studied irradiating different types of thin metal and plastic targets having 1-micron thickness. The maximization of the proton energy process was investigated optimizing the laser parameters, the irradiation conditions and the target properties. Employing 600–700 J laser pulse energy, a focalization inducing self-focusing effects and using targets with optimized thickness, it was possible to accelerate protons up to energies of above 8 MeV. The time-of-flight diagnostics has allowed to monitor the plasma properties and to control the ion acceleration process. 相似文献
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