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1.
激光等离子体太赫兹辐射源的频率控制   总被引:1,自引:0,他引:1       下载免费PDF全文
李娜  白亚  刘鹏 《物理学报》2016,65(11):110701-110701
实验研究了双色超快强激光场作用于氮气分子束所产生的宽带太赫兹(THz)辐射光谱随等离子体介质的密度和长度的依赖关系, 发现THz辐射的中心频率随等离子体密度提高和长度减小而增大(0.8-1.4 THz), 且谱宽也随之增加(0.78-1.53 THz). 分析和计算表明, 太赫兹光谱的变化由等离子体振荡频率和谱宽决定. 该发现为等离子体宽带太赫兹辐射源的光谱操控提供了新思路.  相似文献   

2.
谢军  范文慧  汤洁 《光子学报》2016,(10):155-160
基于改进的二维光电流模型,研究了双色激光偏振夹角对太赫兹辐射产生的影响.通过改变基频光以及其对应的倍频光的偏振夹角发现,在激光等离子体中辐射的太赫兹波的强度与双色激光的偏振夹角呈周期性变化,并且最佳偏振夹角和不同激光强度也有关系.在相对较低的激光强度下(≤2×1014 W/cm2),当两束激光具备相同的偏振方向,即偏振夹角为0°时,太赫兹幅值达到最大;然而,当激光强度足够高(>2×1014 W/cm2)时,最佳的偏振夹角会随着激光强度的增加而变大.从电子密度的角度来分析产生这种现象的原因,并用剩余漂移电流来揭示其潜在的物理机制.研究表明,剩余漂移电流是激光诱导等离子体产生太赫兹波的本质根源,对太赫兹波的产量起着决定性作用.  相似文献   

3.
李航  张颖  孙文峰  王新柯  张岩 《光学技术》2019,45(4):491-494
提出了一种通过共线型双等离子体的简单方法实现双色场作用下辐射太赫兹波的频谱调制。利用修正的光电流模型,模拟了共线型双等离子体在双色场条件下辐射太赫兹波的频谱分布。通过调节体系的参数,研究了两等离子体间距及激光光强对太赫兹波频谱调制的影响。结果表明,太赫兹频谱分布与两等离子体间距及双色激光强度有关。等离子体间距影响太赫兹波频谱的峰值个数和频移;激光光强虽会影响单个等离子体辐射太赫兹波的峰值频率,但是对于调制的频谱而言只会改变峰值的幅值。  相似文献   

4.
太赫兹光谱分析和检测技术在材料特性研究、医学诊断、环境监控等方面具有广阔的应用前景。目前高性能太赫兹源的缺乏是太赫兹光谱检测和成像技术发展缓慢的制约因素之一。因此,强场宽带太赫兹源的开发一直是太赫兹领域的研究重点。综述超快飞秒激光脉冲驱动下强场太赫兹波辐射的研究进展,详述激光激励金属纳米薄膜、气体和液体中等离子体辐射宽频强场太赫兹波的现象和物理机制,并比较了各种强场太赫兹产生方法的特点和优缺点,最后讨论基于超快激光激发物质产生太赫兹波的发展前景及所面临的挑战。  相似文献   

5.
强太赫兹源是太赫兹科学技术发展的关键,其中大能量强场太赫兹脉冲源在超快物态调控、新型电子加速器等领域具有重要的应用前景.超快超强激光与等离子体相互作用是近年来发展起来的一种新型的强场太赫兹辐射产生途径.本文报道了利用超强飞秒激光脉冲与金属薄膜靶作用产生太赫兹辐射的实验结果,研究了激光能量和离焦量对靶后太赫兹辐射能量的影响,并通过监测激光背向散射光谱,定性揭示了其变化规律与不同光强下的电子加热机制的相关性.实验表征了太赫兹辐射的频谱、偏振及聚焦光斑情况.测量结果表明,实验产生了脉冲能量达458μJ、聚焦场强高达GV/m量级的超宽带太赫兹辐射,为开展极端太赫兹脉冲与物质相互作用研究提供了一种新的强场太赫兹光源.  相似文献   

6.
超热电子产生的靶后相干渡越辐射光谱实验研究   总被引:1,自引:0,他引:1       下载免费PDF全文
利用OMA光学多道分析仪测量了激光与薄膜靶相互作用中产生的辐射光谱,在靶后观察到红移的二次谐波发射. 这种二次谐波是v×B加热产生的、具有微脉冲结构的超热电子束在等离子体-真空边界产生的相干渡越辐射(CTR). 随着激光能量的增大,红移峰向长波方向移动,光谱同时发生展宽. 分析认为,等离子体临界面的迅速膨胀是导致二次谐波红移的主要原因. 随着预脉冲能量的增大,临界面膨胀速度增大,导致了发射峰更大的红移. 实验还测量了靶面法线方向的辐射光谱,观察到基频辐射的红移和展宽. CTR为诊断临界面的运动方向和速度提供了一种新的方法. 关键词: 相干渡越辐射 超热电子 超短超强激光 等离子体相互作用  相似文献   

7.
利用激光与等离子体相互作用产生超强太赫兹辐射的研究成为国内外研究的热点。基于Smith提出的线形天线辐射理论,对超强超短激光脉冲驱动天线靶产生太赫兹的辐射特性进行研究,建立了完备的辐射空间分布和频谱空间分布表达式。利用激光脉冲长度与天线长度的比值对辐射场分布的影响,讨论了固定天线长度时的最佳激光脉冲长度,以及固定激光条件时,天线长度对辐射场的频谱和空间分布的调制作用。理论分析结果表明,激光脉冲长度决定了辐射频率范围,激光脉冲长度与天线长度的比值决定了辐射场峰值的方向和频谱分布,为设计合理实验方案提供理论依据。  相似文献   

8.
飞秒激光在空气中形成的等离子体细丝会辐射出太赫兹(THz)信号.实验利用1 mJ,800 nm,50 fs的飞秒激光脉冲产生等离子体细丝.应用光电取样方法探测了激光成丝现象中前向辐射的THz脉冲,得到了持续时间为0.1 ps、光谱峰值在1 THz左右的单周期THz脉冲.转动抽运光的偏振态,分析了电光取样信号的变化.通过比较实验数据和计算结果,证明了成丝辐射THz脉冲的偏振态为椭圆偏振态.  相似文献   

9.
研究了p型(100)InAs在不同中心波长飞秒激发光(750—850nm)作用下的太赫兹(THz)波辐射特性.这种太赫兹辐射的光谱性质与光学Dember效应密切相关,飞秒脉冲激发下产生的载流子在InAs表面的Dember场内做加速运动,从而辐射出THz电磁波.实验结果表明:不同中心波长的激发光作用下,InAs表面产生的Dember电场、光生载流子浓度、谷间散射效应以及处于不同状态的载流子数目都发生了变化,因而激发出太赫兹波的功率、振幅、频谱分布和有效谱宽是不同的.这项研究将有利于THz时域光谱技术以及实验  相似文献   

10.
研究了p型(100)InAs在不同中心波长飞秒激发光(750—850nm)作用下的太赫兹(THz)波辐射特性.这种太赫兹辐射的光谱性质与光学Dember效应密切相关,飞秒脉冲激发下产生的载流子在InAs表面的Dember场内做加速运动,从而辐射出THz电磁波.实验结果表明:不同中心波长的激发光作用下,InAs表面产生的Dember电场、光生载流子浓度、谷间散射效应以及处于不同状态的载流子数目都发生了变化,因而激发出太赫兹波的功率、振幅、频谱分布和有效谱宽是不同的.这项研究将有利于THz时域光谱技术以及实验  相似文献   

11.
The generation of terahertz (THz) emission from air plasma induced by two-color femtosecond laser pulses is studied on the basis of a transient photocurrent model. While the gas is ionized by the two-color femtosecond laser-pulses com- posed of the fundamental and its second harmonic, a non-vanishing directional photoelectron current emerges, radiating a THz electromagnetic pulse. The gas ionization processes at three different laser-pulse energies are simulated, and the corresponding THz waveforms and spectra are plotted. The results demonstrate that, by keeping the laser-pulse width and the relative phase between two pulses invariant when the laser energy is at a moderate value, the emitted THz fields are significantly enhanced with a near-linear dependence on the optical energy.  相似文献   

12.
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   

13.
Spectral analysis of radiation emitted transverse to laser propagation in laser-wakefield acceleration experiments shows broadband emission when electrons are accelerated to relativistic energies. The region over which emission occurs is short compared with the overall interaction length. The energy of the emission and location along the interaction length both vary with plasma density. A model for the radiation from self-trapped electrons indicates that the emission is a signature of the violent initial acceleration, and hence can be used as a diagnostic of the self-injection mechanism.  相似文献   

14.
王伟民  张亮亮  李玉同  盛政明  张杰 《物理学报》2018,67(12):124202-124202
两束双色激光脉冲能在大气中产生MV/cm的强太赫兹波.本文主要介绍了我们最近的三项理论和实验工作,澄清了双色激光方案的物理机制这个长期存在的问题,并对该方案进行了推广.为了在气体中有效地产生太赫兹波,在广泛研究的双色激光方案中两束激光的频率比ω_2/ω_1总是被取为1:2.首先从理论上预测采用其他频率比时,此方案仍能有效地工作,并通过实验进行证实.实验上观察到在新的频率比ω_2/ω_1=1:4,2:3下,也能有效地产生太赫兹波;观察到通过旋转较长波长的激光脉冲的偏振方向,能够有效地调节太赫兹波的偏振,但是旋转波长较短的激光脉冲的偏振方向,太赫兹波的偏振几乎没有变化,这违背了多波混频理论中极化率张量对称性的要求;采用不同的频率比时,太赫兹能量定标率并没有显示出明显的区别,这与多波混频理论预测的能量定标率不符.这些实验结果与等离子体电流模型及粒子模拟结果符合得很好.因此,该研究不仅对双色激光方案进行了推广,而且证实了其物理机制应该归结为等离子体电流模型.  相似文献   

15.
We diagnosed the polarization characteristics of Terahertz emission from a two-color femtosecond laser filament when the polarizations of ω and 2ω beams are orthogonal. We discovered that the THz pulse is elliptically polarized. The generation mechanism could be through four-wave optical rectification inside the filament zone where the inversion symmetry of air is broken.  相似文献   

16.
The proposed model of laser plasma emission spectrum formation enables us to determine the absolute value of the laser pulse to plasma emitted radiation conversion factor, profile of the emission spectrum, and frequency distribution of the intensity and energy in the emitted spectra. This is of interest for laser plasma diagnostics and provides a means for direct calculation of the number of excited nuclei in dependent on the parameters of laser pulse. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

17.
Femtosecond laser filamentation is a method of generating terahertz, which has wide application in terahertz subwavelength resolution imaging. In this paper, the plasma filament formed by femtosecond laser focusing was terminated with an alumina ceramics at different positions and the influence of the cutting off position of the plasma filament on the terahertz wave was studied. The results showed that the terahertz amplitude increases as the position approaches the end of the filament gradually. The stability of amplitude and peak frequency of the terahertz generated by the filament formed by two-color femtosecond laser via a lens with a longer focal length is lower than that through a lens with a shorter focal length, especially the terahertz amplitude at the end of the filament. The study will be helpful for future researchers in the field of THz sub-wavelength imaging utilizing femtosecond laser filament.  相似文献   

18.
The mechanism of terahertz(THz) pulse generation with a static magnetic field imposed on a gas plasma is theoretically investigated. The investigation demonstrates that the static magnetic field alters the electron motion during the optical field ionization of gas, leading to a two-dimensional asymmetric acceleration process of the ionized electrons. Simulation results reveal that elliptically or circularly polarized broadband THz radiation can be generated with an external static magnetic field imposed along the propagation direction of the two-color laser. The polarization of the THz radiation can be tuned by the strength of the external static magnetic field.  相似文献   

19.
The THz radiation emission of Au-coated nanogratings (fused silica substrate, 30?nm Au layer thickness, 500?nm grating constant) upon fs laser irradiation (785?nm, 150?fs, 1?kHz,???1?mJ/pulse) is observed in both directions along the laser beam axis (forward and backward) and for both, illumination of the Au/air or the Au/silica interface. THz radiation along the laser beam propagation is emitted in a narrow solid angle of about 15°?fwhm independent on the laser pulse fluence, the angle of incidence and the nanograting profile. The bar width and groove depth of the nanograting as well as the angle of laser beam incidence strongly affect the THz radiation yield. The energy of single THz light pulses is measured absolutely (2?fJ in the 0.3?C0.38?THz range) using a highly sensitive and fast superconducting transition edge sensor. The bi-directional emission of THz radiation is in agreement with the model assumption of surface plasmon polaritons propagating simultaneously on both Au layer interfaces (Au/air and Au/silica).  相似文献   

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