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A survey on the mechanisms of powerful terahertz (THz) radiation from laser plasmas is presented.Firstly,an analytical model is described,showing that a transverse net current formed in a plasma can be converted into THz radiations at the plasma oscillation frequency.This theory is applied to explain THz generation in a gas driven by two-color laser pulses.It is also applied to THz generation in a tenuous plasma driven by a chirped laser pulse,a few-cycle laser pulse,a DC/AC bias electric field.These are well verified by particle-in-cell simulations,demonstrating that THz radiations produced in these approaches are nearly single-cycles and linear polarized.In the chirped laser scheme and the few-cycle laser scheme,THz radiations with the peak field strength of tens of MV/cm and the peak power of gigawatt can be achieved with the incident laser intensity less than 10 17 W/cm 2. 相似文献
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论述了天光一号电子束泵浦KrF准分子激光预放大器电子束产生和传输系统的研制。针对低电压(400kV)和高电流密度(143Acm-2),重点考虑了二极管真空绝缘界面、电极结构、漂移区长度和主膜支撑等问题并介绍了实验结果:二极管电压在450 kV以上仍能稳定工作,电流上升前沿约20ns,电子束总束能4.2kJ以上。只要开关导通时间选在PFL电压峰值附近,Marx 建立时间抖动小于20 ns,对总束能的影响将小于5%。 相似文献
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介绍了利用价格便宜的普通视频CCD来获取紫外激光和软X射线图像的方法和应用结果,以代替价格昂贵的紫外CCD、使用不方便的X光胶片或者昂贵的X光CCD,其关键点是:(1)去除CCD相机的自动增益校正;(2)将相机的校正系数γ值设置为1;(3)去除CCD相机前面的保护窗。作为一种简易的装置,可以用于紫外激光测量及激光与等离子体相互作用研究。结果表明,采用改造后的普通视频CCD测量紫外激光光斑,准确可靠,其灵敏度比科学级紫外CCD的低一个量级,它还可以测量软X射线的二维分布,作为X光针孔相机使用非常方便。 相似文献
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基于高定向热解石墨晶体(highly oriented pyrolitic graphite,HOPG)研制了一种新型反射式X射线谱仪.该谱仪具有高反射效率、较高能谱分辨率及相对较宽的能谱测量范围.根据计算,在相同的入射条件下,该谱仪的效率比一般X射线弯晶谱仪高3个量级;谱仪能谱分辨率理论值最高达350;理论探测范围是6.891keV至9.193 keV.我们将该谱仪应用在高功率密度激光与固体靶相互作用的实验中,发现在普通弯晶谱仪无法采到信号的实验条件下,HOPG谱仪依然采集到清晰的Cu K谱线.分析发现在8.048 keV(Cu的Kα光子能量)附近的能谱分辨能力最高达到40 eV,分辨率大于200. 相似文献
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We systematically study the optimization of highly efficient terahertz(THz) generation in lithium niobate(LN)crystal pumped by 800 nm laser pulses with 30 fs pulse duration. At room temperature, we obtain a record optical-to-THz energy conversion efficiency of 0.43% by chirping the pump laser pulses. Our method provides a new technique for producing millijoule THz radiation in LN via optical rectification driven by joule-level Ti:sapphire laser systems, which deliver sub-50-fs pulse durations. 相似文献
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