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1.
胡鹏  陈发良 《强激光与粒子束》2007,19(11):1771-1774
 从电子密度速率方程出发,建立短脉冲激光辐照下SiO2材料中导带电子增长简化模型,计算了SiO2中光致电离速率和电子雪崩速率,得到SiO2激光损伤阈值与脉冲宽度的关系,计算分析了光致电离和碰撞电离两种电离机制在导带电子累积过程中的不同作用。结果表明:脉冲较长,碰撞电离几乎能提供全部的导带电子,激光损伤阈值与脉宽的0.5次方成正比;脉冲较短时,导带电子主要由碰撞电离产生,光致电离提供碰撞电离的初始电子,激光损伤阈值随着脉宽的减小,先增加后减小。  相似文献   

2.
王晓峰  贾天卿  徐至展 《物理学报》2005,54(7):3451-3456
激光照射下光学材料的损伤过程中,导带电子的加热和碰撞电离是非常重要的过程,影响着导带电子的产生、晶格能量的沉积和破坏.分析了Drude模型的局限性,从经典力学出发求解了周期量级激光场中导带电子的运动方程,计算了导带电子的光吸收和碰撞电离,分析了激光强度、载波相位等对碰撞电离的影响. 关键词: 周期量级超短激光脉冲 导带电子 碰撞电离  相似文献   

3.
光学元件的激光损伤问题是激光器件向高功率密度方向发展中必须认识和克服的问题.基于Forkker-Planck方程,研究了激光与材料相互作用时的雪崩电离机制、多光子电离机制以及联合两种机制的情况.雪崩电离的产生需要一定密度的初始自由电子存在,该自由电子可以是材料中原本就存在的,也可能是光电离产生的.着重分析了材料中的初始自由电子对材料电离机制的影响.结果表明,雪崩过程在激光作用一段时间后会达到一个稳定的电离阶段(以自由电子平均能量不随时间变化为特征,且此时雪崩电离为材料电离的主导机制),该时间与光电离速率、材料中初始自由电子密度有关.材料中的初始自由电子可以在一定程度上掩盖光电离的作用效果.
关键词:初始电子;激光损伤;光电离;雪崩电离  相似文献   

4.
以晶面<100>的硅片为研究对象,使用重复频率1 kHz的超快复合双脉冲作为激发工具,通过研究双脉冲之间的偏振夹角、延迟时间和脉冲数对周期性结构面积的影响,探究引起周期性结构演化的非线性电离动力学。实验结果表明,在激光能量密度为0.23 J/cm2、脉冲组合为100个的复合脉冲辐照条件下,正交偏振诱导的结构面积最小,相比于其他入射形式下诱导的最大面积减小率约为45%,这是因为局域场的反复调制抑制了周期性结构边缘烧蚀阈值的降低。在正交偏振时,随着两束脉冲之间延迟时间的改变,通过观察诱导结构面积变化可以分析从电子电离到物质喷发的连续过程。该复合脉冲调控技术可为研究超快激光诱导半导体表面周期性结构的偏振依赖性与电子电离效率提供参考,进一步的改进有望实现超衍射极限结构的快速诱导。  相似文献   

5.
基于约化电子数密度增长速率方程,建立了熔石英导带电子数密度随脉冲持续时间变化的模型。利用电子数临界密度这一概念,得到了150fs~10ps脉宽下,熔石英激光损伤阈值范围。分析表明,5~10ps,雪崩电离仍然起主要作用,而光致电离提供的初始电子使雪崩电离不再依赖材料原有的初始电子;当脉宽减小到约为4ps时,光致电离与雪崩电离作用相等;之后,光致电离起主要作用。通过仿真出的损伤阈值拟合,得到了该脉宽区间下新的脉宽定律:熔石英的损伤阈值正比于脉宽的0.38次方;考虑温度对熔石英损伤阈值的影响,熔石英的损伤阈值正比于脉宽的0.34次方。  相似文献   

6.
卞华栋  戴晔  叶俊毅  宋娟  阎晓娜  马国宏 《物理学报》2014,63(7):74209-074209
本文通过数值模拟(3+1)维扩展的广义非线性薛定谔方程,研究了紧聚焦飞秒激光脉冲在诱导石英玻璃的非线性电离过程中电子动量弛豫时间对于该电离过程的影响.计算结果证明电子动量弛豫时间会直接影响入射脉冲在焦点区域所形成的峰值场强、自由电子态密度和能流等参量的分布态势,因此在与实验结果相比较后发现适合于相互作用过程的电子动量弛豫时间的理论值约为1.27 fs.进一步的研究表明,电子动量弛豫时间与逆韧致吸收效应、雪崩电离的概率、等离子体密度、等离子体的自散焦效果以及间接引起的焦平面位置的移动都有着密切的联系.当前的研究结果表明电子动量弛豫时间在飞秒激光脉冲与物质相互作用的过程中发挥着重要作用.  相似文献   

7.
采用强场近似方法,对处于两个具有时间延迟的圆偏振激光场中氢原子的涡旋状光电子动量分布进行了数值模拟。在两个延时激光脉冲的作用下,电子吸收光子后克服电离阈值,从基态经由两个不同的通道跃迁到连续态,产生的电子波包之间会发生干涉。模拟结果表明,所产生的光电子动量涡旋的旋向与两脉冲的偏振方向有关,涡旋臂的数目与激光载波频率有关。动态Stark效应是一种典型的强场现象。若在电离发生的同时考虑动态Stark效应,将会观察到动量涡旋的扭曲。对顺时针的动量涡旋及其扭曲进行分析,发现扭曲现象是由动态Stark效应引入的附加相位的时间非线性特性引起的。  相似文献   

8.
李志刚  程立  袁忠才  汪家春  时家明 《物理学报》2017,66(19):195202-195202
研究高功率微波作用下等离子体中的雪崩效应,对于研究等离子体防护技术具有重要意义.通过采用等离子体流体近似方法,建立等离子体中的波动方程、电子漂移-扩散方程和重物质传递方程,表征电磁波在等离子体中的传播以及等离子体内部带电粒子的变化情况,分析研究了高功率微波作用下雪崩效应的产生过程和变化规律.研究表明,入射电磁波功率决定了雪崩效应的产生;初始电子密度能够影响雪崩效应产生的时间;入射电磁波的激励作用初始表现为集聚效应,当激励能量积累到一定阈值时,雪崩效应才会产生;在雪崩效应产生过程中,等离子体内部电子密度的变化非常迅速并且比较复杂.雪崩效应产生后,等离子体内截止频率会远超过入射波频率,电磁波不能在等离子体中传播,从而起到防护高功率微波的效果.  相似文献   

9.
黑体辐射法可用于测量电介质内部被超短脉冲激光加工后,电子和晶格的瞬时温度.当一个超短激光脉冲通过物镜聚焦到石英玻璃内部时,在焦点附近诱导出微结构.微结构中热影响区的最大宽度为16μm,热影响区发出的黑体辐射谱通过物镜、带耦合透镜的光纤、光谱仪以及ICCD组装成的系统记录.测试系统收集了电介质内部被单个激光脉冲辐照后,热影响区发射的黑体辐射谱,然后用Planck公式拟合黑体辐射谱,得到电介质温度.电介质被超短激光脉冲辐照后,首先电介质中的价带电子通过强场电离和雪崩电离跃迁到导带,高温高压的等离子体以冲击波的形式向外运动,通过对流方式传递能量,该过程发生在激光辐照石英后21 ns内.21 ns后冲击波转化为声波,中心的气态石英通过热扩散方式影响周围的固态区域,石英温度缓慢下降.在时刻t(单位ns),石英玻璃的温度为5333 exp(-t/1289)K.石英经过3.72μs将冷却到室温,因此重复频率在269 k Hz以上的激光,加工石英玻璃时具有热累积效应.  相似文献   

10.
以Nd·YAG激光器的二倍频输出作为激发源,获得了激光诱导Ni等离子体的发射光谱,基于发射光谱,对等离子体电子激发温度和电子密度进行了测量,其典型值分别为3 714 K,4.67×1016 cm-3。测量了等离子体电子激发温度和电子密度的空间分布,发现沿垂直于激光传播方向的径向,随到中心点距离的增加,等离子体辐射的强度减小,但线型和线宽不变,表明等离子体电子激发温度和电子密度沿径向均匀分布。沿激光传播方向,随到样品表面距离的增加,等离子体辐射强度、电子激发温度和电子密度先增加后降低,在距样品表面1.5 mm处,达到最大值。采用激光诱导击穿光谱技术进行相关探测时,收集距离样品表面1.5 mm处的发射谱,有利于提高探测灵敏度。  相似文献   

11.
超短脉冲照射下氟化锂的烧蚀机理及其超快动力学研究   总被引:7,自引:0,他引:7  
研究了超短脉冲激光照射下LiF晶体的破坏机理及其超快动力学过程,利用扫描电镜和原子力显微镜等测试手段,观测了飞秒激光照射下LiF晶体的烧蚀形貌。利用烧蚀面积与激光脉冲能量的对数关系确定了LiF晶体的破坏阈值,并利用非线性玻璃棒展宽脉宽,得到了800nm激光作用下LiF破坏阈值对激光脉宽(50~1000fs)的依赖关系;利用抽运一探针超快探测平台,探测了LiF烧蚀过程中反射率的变化。采用雪崩击穿模型,并根据晶体材料反射率与材料的介电常量的依赖关系,通过数值计算,模拟了材料烧蚀阈值与脉宽的依赖关系及材料激发过程中反射率的变化关系。结果表明,理论结果与实验结果符合较好。讨论了飞秒激光照射下LiF晶体中导带电子数密度的变化规律,并解释了相应的实验结果。  相似文献   

12.
After the photoexcitation by a femtosecond laser pulse inside a LiF single crystal, four cracks appear in the <110> directions of the crystal from the photoexcited region. In our previous study, we found that a femtosecond laser-induced stress wave is responsible for generation and elongation of cracks inside a LiF single crystal. This finding suggests that we can control laser-induced cracks by modulating laser-induced stress waves. In this study, we applied parallel fs laser irradiation with a spatial light modulator to generate multiple stress waves at the same time, and found the modulation of crack formation; one crack became thinner and shorter than any other cracks. By a pump-probe imaging of dynamics of crack generation, we showed that the constructive interference of stress waves at a crack tip could compress the crack, which results in a thinner and shorter crack.  相似文献   

13.
The formation of fluorescent channels with color centers in LiF crystals under the action of the multiple filamentation of femtosecond laser pulses is studied experimentally and theoretically for pulse powers around four orders of magnitude higher than the critical self-focusing value.  相似文献   

14.
In this paper, we report that mode-locked operation is realized in a flashlamp-pumped Nd:YAG laser with a nearly critical stable resonator, using LiF:F2 color center crystal as a modulation device. A single pulse train with the energy of 25 mJ and the pulse duration of 82 ps is obtained. Both the theoretical and experimental results have shown that the mode-locked operation has resulted from kerr-lens effect formed in combination with self-focusing within Nd:YAG and an aperture at a specific point, but not directly from the saturable absorption of LiF:F2 crystal.  相似文献   

15.
At the Institute of Laser Engineering, various type of experiments related to fast ignition were performed with the 12-beam laser system GEKKO XII and the newly added 100 TW beams line. Using both X-ray and UV laser probes, drilling via ponderomotive laser light self-focusing was studied to show drilling well into the overdense plasma over a distance of 100 μ m at a self-focused laser intensity of 1018 W / cm 2 . This type of self-focusing accelerated electrons up to 0.1 to 1 MeV and was also applied to an imploding shell.  相似文献   

16.
Single-shot laser damage threshold of MgO for 40-986 fs, 800 nm laser pulses is reported. The pump-probe measurements with femtosecond pulses were carried out to investigate the time-resolved electronic excitation processes. A theoretical model including conduction band electrons (CBE) production and laser energy deposition was applied to discuss the roles of multiphoton ionization (MPI) and avalanche ionization in femtosecond laser-induced dielectric breakdown. The results indicate that avalanche ionization plays the dominant role in the femtosecond laser-induced breakdown in MgO near the damage threshold.  相似文献   

17.
The effects of the interaction of an intense femtosecond laser pulse with large atomic clusters are considered. The pulse intensity is of the order of 1018 W cm?2. New effects appear when the magnetic component of the Lorentz force is taken into account. The second harmonic of laser radiation is generated. The second harmonic generation (SHG) efficiency is proportional to the square of the number of atoms in a cluster and the square of the laser radiation intensity. The resonance increase in the SHG efficiency at the Mie frequencies (both at the second harmonic frequency and fundamental frequency) proved to be insignificant because of the fast passage through the resonance during cluster expansion. The mechanisms of the expansion and accumulation of energy by electrons and ions in the cluster are discussed in detail. The energy accumulation by electrons mainly occurs due to stimulated inverse bremsstrahlung upon elastic reflection of the electrons from the cluster surface. The equations describing the cluster expansion take into account both the hydrodynamic pressure of heated electrons and the Coulomb explosion of the ionized cluster caused by outer shell ionization. It is assumed that both inner shell and outer shell ionization is described by the over barrier mechanism. It is shown that atomic clusters are more attractive for the generation of even harmonics than compared to solid and gas targets.  相似文献   

18.
Millimeter-long filaments and accompanying luminous plasma and defect channels created in fused silica (FS) by single focused femtosecond laser pulses with supercritical powers were probed in situ using optical imaging and contact ultrasonic techniques. Above the threshold pulse energy Eopt = 5 μJ corresponding to a few megawatt power levels pulses collapse due to self-focusing, producing channels filled by electron-hole plasma and luminescent defects, and exhibits predominantly compressive pressure transients. Analysis of the optical and ultrasonic response versus the laser pulse energy suggests that filamentary pulse propagation in the channels occurs with considerable dissipation of about ∼10 cm−1. The predominant ionization mechanism is most likely associated with avalanche ionization, while the main mechanism of optical absorption is free-carrier absorption via inverse Bremsstrahlung interaction with the polar lattice.  相似文献   

19.
采用了不同能量的单脉冲和多脉冲飞秒激光对LiNbO3晶体进行烧蚀,并刻蚀了表面衍射型光栅.通过扫描电镜和原子力显微镜观察了烧蚀点的形貌特征,首次发现利用单束飞秒激光脉冲对LiNbO3晶体烧蚀,可以得到超衍射极限的烧蚀点,当聚焦光斑直径约为2μm、能量为170nJ的单脉冲飞秒激光作用时,烧蚀点的直径约为400nm,100nJ,17个脉冲作用时烧蚀点的直径约为800nm.同时可以观察到在能量较低的多脉冲飞秒激光作用下, LiNbO3晶体呈现出大约200nm周期性分布的波纹状结构.实验结果表明,选择合适参数的飞秒激光脉冲可以对LiNbO3晶体进行超衍射极限加工,这对于利用飞秒激光制作LiNbO3基质的微纳光电子器件有十分重要的意义.  相似文献   

20.
A mechanism of formation of electromagnetic radiation that accompanies α decay and is associated with the emission of photons by electrons of atomic shells due to the scattering of α particles by these atoms (polarization bremsstrahlung) is proposed. It is shown that, when the photon energy is no higher than the energy of K electrons of an atom, polarization bremsstrahlung makes a significant contribution to the bremsstrahlung in α decay.  相似文献   

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