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1.
一种双模叠加态光场的两种非线性高阶压缩效应   总被引:177,自引:63,他引:114  
杨志勇  侯洵 《光子学报》1998,27(4):289-299
本文在发展现有理论的基础上提出了双模及多模辐射场的两种非线性高阶压缩(即N次方Y压缩和N次方H压缩)的定义,根据量子力学中的线性叠加原理构造了一美双模叠加志光场|ψ>,对|ψ>的N次方Y压缩及N次方H压缩效应进行了详细研究.结果表明:双模叠加态光场|ψ>是一种典型的非经典光场,它可具有任意阶的N次方Y压缩及N次方H压缩效应;并且,在一定的条件下,这两种非线性高阶压缩效应均可呈现出周期性变化的特性.文献7的单模辐射场振幅N次方压缩的定义,仅仅是本文所提出的N次方Y压缩和N次方H压缩这两种非线性高阶压缩的一般定义在k=1条件下的特例.  相似文献   

2.
窄线宽线形腔调Q双包层掺钕光纤激光器   总被引:2,自引:2,他引:0  
LD泵浦调Q双包层掺Nd3+光纤激光器进行了实验研究.在Littrow结构的体光栅与二向色镜构成的线形腔结构中,利用声光Q开关(AQM)调Q,在1064nm得到了光谱线宽约为0.08nm稳定的激光脉冲序列.脉冲重复频率从1kHz到10kHz可调.在重复频率1kHz时得到脉冲宽度约800ns,最大单脉冲能量180μJ,脉冲峰值功率225W,激光平均功率180mW,并对激光输出脉冲能量进行了计算,计算结果与实验符合很好.  相似文献   

3.
激光调Q CAI   总被引:4,自引:3,他引:1  
从激光调Q速率方程出发,分析推导了激光调Q过程中,腔内光子数与工作物质内反转粒子数间的关系.再根据激光调Q的过程中,对腔Q值控制方式不同,将激光调Q技术分为:转镜调Q、声光调Q、电光调Q、饱和吸收调Q和脉冲透射式调Q.用C语言进行了激光调Q CAI软件的开发研制,获得了将文学、图形、动画和计算融为一体的,直观而生动地将调Q的理论和过程再现于屏幕的CAI课件.介绍了课件的内容、结构及其特点.  相似文献   

4.
利用平面对称碰撞和“原位”测量实验方法,对Z-切石英的弹性响应特性和窗口光学特性进行了研究.结果表明,在至少10 GPa内,Z-切石英为弹性单波响应,且透光性良好,可作为速度剖面测试系统的光学窗口.10 GPa内Z-切石英的冲击波速度和粒子速度之间满足线性关系.1550 nm入射光条件下,其窗口速度修正采用指数形式较为精确,线性修正仅适用于特定范围;而折射率随密度的变化关系则可采用线性函数进行较好描述.以上结果为Z-切石英应用于基于1550 nm光源激光干涉测速系统的光学窗口提供了依据.  相似文献   

5.
郑树文  范广涵  何苗  姚光锐  陈峻  贺龙飞 《物理学报》2012,61(17):177102-177102
采用基于密度泛函理论平面波赝势方法, 对纤锌矿BeO掺Cd的Be1-xCdxO合金进行电子结构与能带特性研究. 结果表明: Be1-xCdxO的价带顶始终由O 2p电子态决定, 而导带底由Be 2s和Cd 5s的电子态决定.随着Be1-xCdxO合金的Cd掺杂量增加, Cd 4d与O 2p的排斥效应逐渐加强, 同时Be1-xCdxO的带隙逐渐变小, 出现"直接-间接-直接"的带隙转变. 为了使理论值与实验值相一致, 对Be1-xCdxO带隙进行修正, 并分析了纤锌矿BeO-ZnO-CdO三元合金的带隙和弯曲系数与晶格常数的关系.  相似文献   

6.
张秋琳  苏红新  孙江  郭庆林  付广生 《物理学报》2007,56(10):5818-5820
报道了二极管激光抽运Cr,Nd∶YAG被动调Q Nd∶YVO4 1064nm激光输出.为了提高被动调Q激光的输出稳定性,谐振腔采用长腔,增益介质位于谐振腔中间位置.实验中获得了稳定的被动调Q激光输出.在最高入射抽运功率为17.5W时,脉冲重复频率达到71.3kHz,脉冲宽度为0.4μs.调Q脉冲幅度不稳定性低于±10%,脉冲时间波动性低于±3.5%.  相似文献   

7.
冯琛  冯国英  陈念江  周寿桓 《物理学报》2012,61(13):134209-134209
设计了基于宽度抛物线型和孔径渐变的一维(1-D)光子晶体 (PhC)纳米梁腔.通过FDTD的计算模拟, 设计的这种纳米梁腔可以实现超高Q值1.8× 107, 同时拥有超小模体积V~ 0.04(λ/n)3, 在继承抛物线型和渐变孔径型纳米梁腔高Q的基础上,进一步降低了模体积V. 我们设计的这种腔具有紧凑, 低制造工艺要求以及高Q/V 值等优点,在未来应有广泛应用.  相似文献   

8.
k光子Jaynes-Cummings模型的亚Poisson光子统计特性研究   总被引:9,自引:4,他引:5  
杨志勇  张纪岳 《光子学报》1996,25(3):193-201
本文利用量子电动力学理论,首次对 k 光子 Jaynes-Cummings 模型中单模激光场的稳态亚 Poisson 光子统计性质进行了系统研究.结果表明:在一般情况下,激光上能级相对泵浦参量 xa 具有一个确定的阈值 xat;当 xa>xat时,光场呈现亚 Poisson 光子统计;当 xa>>xat时,光场呈现出深度且完全恒定的亚 Poisson 光子统计.在特殊情况下,阈值 xat-0,这时在激光腔内将直接诱发亚 Poisson 光子统计.随着 k(k≥2)值增加,阈值 xat降低,光场亚 Poisson 光子统计程度增强.  相似文献   

9.
林秀敏 《光子学报》2001,30(2):145-147
把一维q变形振子的结论推广到Dq变形振子体系,得到了Dq变形振子体系的哈密顿算符形式,并求出了其本征值和在坐标象中的本征函数.结果显示,这是一个非线性振子.  相似文献   

10.
多模奇相干态光场中的N-Y最小测不准态与N-H最小测不准态   总被引:56,自引:33,他引:23  
许定国  侯瑶  杨志勇  侯洵 《光子学报》1999,28(7):577-587
本文根据新近建立的多模辐射场的广义非线性等阶高阶压缩理论,对多模奇相干态光场|Ψ,o〉q中的N次方Y压缩、N次方H压缩、N-Y最小测不准态以及N-H最小测不准态等进行了详细研究.结果表明:1)当压缩阶数N为偶数时,多模奇相干态|Ψ,o〉q总是恒处于N-Y最小测不准态;当N为奇数时,态|Ψ,o〉q既不处于N-Y最小测不准态,也不呈现N次方Y压缩效应.2)当q & #183;N为偶数时,多模奇相干态|Ψ,o〉q总是恒处于N-H最小测不准态;当q & #183;N为奇数时,态|Ψ,o〉q既不处于N-H最小测不准态,也不呈现N次方H压缩效应.3)多模奇相干态|Ψ,o〉q恒处于N-Y最小测不准态与恒处于N-H最小测不准态的条件明显不同,两者存在着严格的区别.  相似文献   

11.
樊丁  黄自成  黄健康  王新鑫  黄勇 《物理学报》2015,64(10):108102-108102
基于局域热平衡状态假设并考虑金属蒸汽的作用, 建立了钨极惰性气体保护焊电弧与熔池交互作用的三维数学模型. 电弧等离子体的热力学参数和输运系数由温度和金属蒸汽浓度共同决定, 并使用第二黏度近似简化处理金属蒸汽在氩等离子中的输运过程. 在考虑熔池流动时, 主要考虑了浮力、电磁力、表面张力和等离子流拉力的作用. 通过对麦克斯韦方程组、连续性方程、动量守恒方程、能量守恒方程和组分输运方程的耦合求解, 得到了金属蒸汽在电弧中的空间分布、电弧和熔池的温度场、速度场和电流密度分布等重要结果. 通过与未考虑金属蒸汽的结果对比, 研究了熔池上表面产生的金属蒸汽对电弧等离子体行为的影响, 以及电弧等离子对熔池行为的影响. 结果表明, 金属蒸汽主要富集在熔池上表面附近; 金属蒸汽对电弧等离子体有明显的收缩作用, 而对等离子速度和电势影响较小; 金属蒸汽的出现对熔池上表面速度分布和剪切力分布以及熔池形貌并无明显影响. 求解结果与已有的实验结果和计算结果符合良好.  相似文献   

12.
通过电弧模型与熔池模型耦合数值模拟,研究了氩弧和氦弧特性及其对SUS304不锈钢钨极惰性气体保护(TIG)焊熔池形貌的影响.通过比较氩弧和氦弧的温度轮廓线以及阳极表面电流密度和热流密度分布发现,氦弧的径向距离比氩弧收缩明显,导致更多热量传递给阳极.模拟了氩弧和氦弧下浮力、电磁力、表面张力和气体剪切力分别对熔池形貌的影响.结果表明:不论是在氩弧还是在氦弧下熔池中表面张力是影响熔池形貌的最主要驱动力.在氩弧下,影响熔池形貌的另一个重要的驱动力是气体剪切力,而氦弧下则是电磁力.由于电磁力引起的内对流运动增加了熔深,从而导致相同氧含量时氦弧下的熔深和焊缝深宽比要高于氩弧下的熔深和焊缝深宽比.随着氧含量的增加,氩弧和氦弧下的焊缝深宽比均先增加而后保持不变.焊缝深宽比的模拟结果与实验结果符合较好. 关键词: 氩弧 氦弧 电弧特性 熔池形貌  相似文献   

13.
The physical characteristics of a plasma arc affect the stability of the keyhole and weld pool directly during keyhole plasma arc welding(KPAW). There will be significant change for these characteristics because of the interaction between the keyhole weld pool and plasma arc after penetration. Therefore, in order to obtain the temperature field, flow field, and arc pressure of a plasma arc under the reaction of the keyhole, the physical model of a plasma arc with a pre-set keyhole was established. In addition, the tungsten and base metal were established into the calculated domain, which can reflect the effect of plasma arc to weld pool further. Based on magneto hydrodynamics and Maxwell equations, a two-dimensional steady state mathematical model was established. Considering the heat production of anode and cathode, the distribution of temperature field, flow field, welding current density, and plasma arc pressure were solved out by the finite difference method. From the calculated results, it is found that the plasma arc was compressed a second time by the keyhole. This additional constraint results in an obvious rise of the plasma arc pressure and flow velocity at the minimum diameter place of the keyhole, while the temperature field is impacted slightly. Finally, the observational and metallographic experiments are conducted, and the shapes of plasma arc and fusion line agree with the simulated results generally.  相似文献   

14.
As a newly developed arc welding method, power ultrasound has been successfully introduced into arc and weld pool during ultrasonic wave-assisted arc welding process. The advanced process for molten metals can be realized by utilizing additional ultrasonic field. Under the action of the acoustic wave, the plasma arc as weld heat source is regulated and its characteristics make an obvious change. Compared with the conventional arc, the ultrasonic wave-assisted arc plasma is bound significantly and becomes brighter. To reveal the dependence of the acoustic binding force on acoustic field parameters, a two-dimensional acoustic field model for ultrasonic wave-assisted arc welding device is established. The influences of the radiator height, the central pore radius, the radiator radius, and curvature radius or depth of concave radiator surface are discussed using the boundary element method. Then the authors analyze the resonant mode by this relationship curve between acoustic radiation power and radiator height. Furthermore, the best acoustic binding ability is obtained by optimizing the geometric parameters of acoustic radiator. In addition, three concave radiator surfaces including spherical cap surface, paraboloid of revolution, and rotating single curved surface are investigated systematically. Finally, both the calculation and experiment suggest that, to obtain the best acoustic binding ability, the ultrasonic wave-assisted arc welding setup should be operated under the first resonant mode using a radiator with a spherical cap surface, a small central pore, a large section radius and an appropriate curvature radius.  相似文献   

15.
双面电弧焊接的传热模型   总被引:4,自引:0,他引:4       下载免费PDF全文
将等离子焊接(PAW)电弧和钨极氩弧焊(TIG)电弧串接,相对作用于工件的正反面形成双面电弧焊接(DSAW)系统,可以引导焊接电流沿工件厚度方向流过小孔,补偿等离子电弧穿透工件时消耗的能量,以有效地提高等离子弧的穿透能力.综合考虑影响双面电弧焊接正反面熔池几何形状的力学因素,建立了熔池表面变形的控制方程,以此为基础并采用帖体曲线坐标系建立了DSAW焊接传热的数学模型,分析了DSAW,PAW焊接传热的差异,从传热的角度解释了DSAW焊接熔深增加的原因.焊接工艺实验表明,计算结果与实测结果吻合良好. 关键词: 双面电弧焊接(DSAW) 传热模型 熔池表面变形模型  相似文献   

16.
等离子弧焊接熔池演变过程的模拟和验证   总被引:1,自引:0,他引:1  
本文建立了描述等离子弧焊接熔池相变传热与流动的三维数理模型,考虑表面张力、电磁力和浮升力的作用,并针对等离子弧焊接特点,改进组合式体积热源模型,上部采用双椭球热源,下部采用圆锥体热源。重点分析了焊接熔池形状和温度场的演变过程,熔合线的模拟形状与实验焊缝吻合,较好地呈现了焊缝的凸起和熔池宽度,验证了数学模型和热源模型的正确性。本文还进一步开展了焊接功率和焊接速度的影响分析。研究结果表明,流动对焊缝形状的影响不容忽略,而表面张力在三个流动驱动力中占主导地位;焊接功率越大,焊接速度越小,越有利于焊件焊透,数值模拟得到优化的焊接功率和速度有益于实际焊接生产质量及效率。  相似文献   

17.
In keyhole fiber laser welding processes, the weld pool behavior is essential to determining welding quality. To better observe and control the welding process, the accurate extraction of the weld pool boundary as well as the width is required. This work presents a weld pool edge detection technique based on an off axial green illumination laser and a coaxial image capturing system that consists of a CMOS camera and optic filters. According to the difference of image quality, a complete developed edge detection algorithm is proposed based on the local maximum gradient of greyness searching approach and linear interpolation. The extracted weld pool geometry and the width are validated by the actual welding width measurement and predictions by a numerical multi-phase model.  相似文献   

18.
Low-power laser/arc hybrid welding process of magnesium alloy shows that the weld capability of tungsten-inert-gas arc is improved under the action of laser pulses. The effect of laser pulse on arc plasma is analyzed by studying the plasma spectra, plasma shapes, and arc voltage in this paper. On the one hand, laser pulse attracts arc plasma to laser keyhole and improves the stability of arc plasma; on the other hand, laser pulse expands the arc plasma and concentrates the electric conducting route of arc plasma. All these increase the output power and energy density of arc plasma, so the welding penetration is improved. In addition, laser pulses are controlled to act on the negative wave of alternating-current arc (the target metal has negative polarity) in hybrid welding process to improve the stability of arc plasma and weld penetration.   相似文献   

19.
This study aims to investigate the arc plasma shape and the spectral characteristics during the laser assisted pulsed arc welding process. The arc plasma shape was synchronously observed using a high speed camera, and the emission spectrum of plasma was obtained by spectrometer. The well-known Boltzmann plot method and Stark broadening were used to calculate the electron temperature and density respectively. The conductive mechanism of arc ignition in laser assisted arc hybrid welding was investigated, and it was found that the plasma current moved to the arc anode under the action of electric field. Thus, a significant parabolic channel was formed between the keyhole and the wire tip. This channel became the main method of energy transformation between the arc and the molten pool. The calculation results of plasma resistivity show that the laser plasma has low resistivity as the starting point of conductive channel formation. When the laser pulse duration increases, the intensity of the plasma radiation spectrum and the plasma electron density will increase, and the electron temperature will decrease.  相似文献   

20.
由于自保护药芯焊丝具有抗风性以及优异的焊缝性能,已广泛应用于野外管道焊接以及大型机械的修复过程。电极极性是影响焊接过程的重要工艺参数。为了研究电极极性对电弧等离子体的影响机理,设计电弧等离子体空域中各点逐步扫描的同步采集系统,通过光谱特征谱线的分析,采用Stark谱线轮廓法计算电子密度,并且基于Boltzmann作图法计算电弧等离子体的温度,同时针对Al和Mg活性元素的分布特征进行分析。结果表明,靠近电极处,沿y轴负方向,直流正接时(焊丝接电源负极性),弧柱中心区电弧电子密度、电弧温度和活性元素呈现“水滴状”分布。而直流反接时(焊丝接电源正极性),弧柱中心区电弧电子密度、电弧温度和活性元素的分布特征表现为“手指状”分布。根据“自磁收缩”的原理,直流正接条件下,活性元素在径向方向受到的电磁力较小,整体分布呈现发散状。直流反接条件下,活性元素在径向方向受到的电磁力较大,收缩较为严重,整体表现为收缩状态。采用相同的电参数时,直流反接条件下弧柱中心区的电弧电子密度、电弧温度均大于直流正接条件下得到的电子密度和电弧温度,其中电子密度分布特征和带电粒子的电离程度是影响电弧温度的主要因素。在相同的电极极性下,随着电流、电压的增大,电弧等离子体的温度和电子密度都在显著增大。  相似文献   

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