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1.
庄军  谭维翰 《光学学报》1996,16(4):94-398
通过数值模拟研究了非线性腔的横向效应,非线性表现在光场通过放大介质时所引起的相位变化与强度有关,模拟结果显示,随着非线性系数的变化,腔中的光场分布表现丰富的时空不稳定行为,其中包括横模跳变,时空周期行为以及光学涡旋的出现。  相似文献   

2.
研究了电磁感应透明介质中高阶非线性效应对光孤子传输的影响。采用半经典理论获得介质对光场的线性和非线性响应,基于介质特性利用波动理论推演出三-五阶非线性薛定谔方程。介质的线性非线性特性分别决定了群速度色散参量,三阶和五阶非线性系数。研究结果表明,该非线性介质既可以诱导亮孤子也可以诱导暗孤子,取决于群速度色散参量和三阶非线性系数。当前者为负同时后者为正时产生亮孤子,当两者均为负时产生暗孤子,二者可以通过载频与相应跃迁能级失谐的调节获得。与普通非线性薛定谔方程相比,三-五阶非线性薛定谔方程对亮孤子和暗孤子出现的参数和输入条件更加严格。  相似文献   

3.
苑博  税国双  汪越胜 《物理学报》2018,67(7):74302-074302
材料损伤以及性能退化与超声波的非线性效应密切相关.为研究循环温度疲劳作用下粘接界面的损伤情况,本文采用超声波透射法,研究了6061型铝合金/改性丙烯酸酯胶粘接界面的声学非线性系数随高温、低温循环次数的变化情况.结果表明,在高温循环疲劳作用的初始阶段,试件的非线性系数变化不明显,但随着高温循环次数的不断增加,非线性系数随循环次数的变化十分明显;对于低温循环疲劳作用的初始阶段,试件的非线性系数迅速增大,随着循环次数的增加,其值增速减缓.在低温循环疲劳寿命的后期,试件的非线性系数随循环次数的增加而继续增大.进一步的讨论结果表明,胶层三阶弹性常数的变化是造成高温循环疲劳时非线性系数变化的主要原因,而对于低温循环疲劳,粘接界面拉伸刚度的变化是引起非线性系数变化的主要原因.  相似文献   

4.
非线性系数是描述材料中微纳尺度损伤的特征参量,非线性系数常通过接触式压电超声进行检测,但耦合剂引起的非线性一般是未知的,针对这一问题,提出了一种非接触式电磁超声非线性纵波检测方法。该方法基于洛伦兹力机理在试件表面产生的振动弹性波,利用不同拉伸载荷下所制备的损伤试件,分别利用压电超声、电磁超声进行非线性超声系数测量。实验结果表明:利用两种非线性超声检测的相对非线性系数与铝合金的拉伸形变呈单调关系,同时也论证了电磁超声纵波基于非线性理论对塑性变形评估的可行性。   相似文献   

5.
王丽  卢成 《物理学报》2011,60(4):44203-044203
在n型四能级原子系统中,研究了电磁感应吸收的非线性理论.结果表明:探测光的拉比频率和衰减分配系数A影响非线性吸收,进而影响介质吸收.当探测光光强较弱时,介质吸收和线性吸收一致,均表现为电磁感应吸收特征;当探测光光强增大时,介质吸收和线性吸收不再一致,介质吸收曲线将会呈现出烧孔现象;当探测光光强增大到控制光(或信号光)光强时,介质吸收表现出很大的增益现象.同时,非线性吸收受到衰减分配系数A的影响,即使在探测场很弱的条件下,随着A值的减小,介质吸收由电磁感应吸收现象表 关键词: 电磁感应吸收 非线性吸收 增益现象 n型四能级原子系统  相似文献   

6.
利用二维模型,对固体激光器中侧面双向泵浦板状激光介质的热效应进行了理论分析,重点研究了介质热物性的温度依存性对其最高温度和最大应力的影响,给出了一种计算介质内最高温度和最大应力的简便方法,并与数值模拟结果进行了对比。结果表明,不考虑介质热物性随温度的变化,将导致计算结果特别是热应力结果偏小。考虑介质热物性随温度的变化时,应用本文提出的简便方法计算得到的最高温度和最大应力与数值模拟结果基本吻合.  相似文献   

7.
税国双  黄蓬  汪越胜 《声学学报》2013,38(5):570-575
进行了列车外圆弹簧在疲劳载荷作用下所产生损伤的非线性超声测试。对列车外圆弹簧进行疲劳加载,利用专门的非线性超声测试系统激发和接收透过弹簧的超声纵波。在相应的信号处理后,建立了声学非线性系数与弹簧疲劳次数之间的关系。实验结果表明,当疲劳次数小于150万次时,由于弹簧材料内部位错、滑移带等微观缺陷还没有形成足以产生显著非线性的积累,该非线性系数增长不明显;当疲劳次数达到150万次至300万次之间的疲劳响应期时,非线性系数增加明显,表明弹簧材料的内部损伤快速增加;当疲劳次数超过300万次时,弹簧材料的内部损伤积累速度减缓,非线性系数增加放缓。该研究表明列车外圆弹簧的疲劳损伤程度与其声学非线性系数直接相关,利用该方法可以为材料和结构早期力学性能退化的检测和评价提供一种有效的途径。   相似文献   

8.
LD端面泵浦薄片激光器的温度和热应力分布研究   总被引:1,自引:1,他引:0  
为了分析薄片激光器的热效应,建立了LD端面泵浦薄片激光介质的数值模型。考虑到介质与空气的对流换热和介质材料的热力学参数随温度的变化,根据经典热传导方程和热弹性方程,运用有限单元法,得出了介质内温度和热应力的时空分布,分析了温度和热应力与泵浦功率、换热系数和时间的变化规律。模拟结果表明:热破坏主要为前表面光斑外侧的拉伸破裂;温度和应力的上升时间和热恢复时间随泵浦功率的变化不是很明显,随换热系数的增大而减小,但随着换热系数的增加,温度和应力的变化越来越小。  相似文献   

9.
郑金桔  郑著宏 《发光学报》2010,31(6):836-841
研究了在CdSe/ZnSe自组装量子点中CdSe量子点的发光随着激发光强度变化的特性。发现当激发强度(I)变化3个数量级的时候,量子点发光的峰位、峰形都没有发生明显的变化。通过公式L∝Ik(其中I是激发光强度,L是量子点发光强度,k是非线性系数)得到非线性系数k值。实验结果表明:在温度由21 K升高到300 K的过程中,k值随温度变化可以分为3个区域:当温度低于120 K时,k值接近于1;然后,随着温度升高,k值慢慢变小;最后,随温度进一步升高,k值由200 K时的0.946迅速减少到0.870。结合发光随温度变化的实验结果,确认在120 K以下发光主要来源于束缚激子复合。在温度由200 K升高到300 K的过程中,非线性系数的单调减小主要归因于随着温度的升高,发光部分来自于由自由电子或空穴到束缚态能级(FB)的复合。进一步通过分析量子点发光的积分强度随着温度的变化的实验结果,发现发光强度随温度升高而减弱的主要原因是材料中的缺陷或者位错等提供非辐射渠道。  相似文献   

10.
周聪  王庆良 《物理学报》2015,64(23):239101-239101
非线性理论是解决地学问题的重要手段, 充分认识非线性波动特征有助于解释实际观测资料中的一些特殊地震现象. 本文基于Hokstad改造的非线性本构方程, 利用交错网格有限差分法实现了固体介质中一维非线性地震波数值模拟; 采用通量校正传输方法消除非线性数值模拟中波形振荡, 提高模拟精度. 通过与解析解的对比验证了模拟结果的正确性. 研究结果显示了非线性系数对地震波的传播有重要影响, 并且当取适当的非线性和频散系数时, 地震波表现出孤立波的传播特性. 最后分析了不同的非线性地震波在固体介质中的传播演化特征.  相似文献   

11.
Nonlinear wave propagation in constrained solids subjected to thermal loads   总被引:1,自引:0,他引:1  
The classical mathematical treatment governing nonlinear wave propagation in solids relies on finite strain theory. In this scenario, a system of nonlinear partial differential equations can be derived to mathematically describe nonlinear phenomena such as acoustoelasticity (wave speed dependency on quasi-static stress), wave interaction, wave distortion, and higher-harmonic generation. The present work expands the topic of nonlinear wave propagation to the case of a constrained solid subjected to thermal loads. The origin of nonlinear effects in this case is explained on the basis of the anharmonicity of interatomic potentials, and the absorption of the potential energy corresponding to the (prevented) thermal expansion. Such “residual” energy is, at least, cubic as a function of strain, hence leading to a nonlinear wave equation and higher-harmonic generation. Closed-form solutions are given for the longitudinal wave speed and the second-harmonic nonlinear parameter as a function of interatomic potential parameters and temperature increase. The model predicts a decrease in longitudinal wave speed and a corresponding increase in nonlinear parameter with increasing temperature, as a result of the thermal stresses caused by the prevented thermal expansion of the solid. Experimental measurements of the ultrasonic nonlinear parameter on a steel block under constrained thermal expansion confirm this trend. These results suggest the potential of a nonlinear ultrasonic measurement to quantify thermal stresses from prevented thermal expansion. This knowledge can be extremely useful to prevent thermal buckling of various structures, such as continuous-welded rails in hot weather.  相似文献   

12.
项延训  朱武军  邓明晰  轩福贞 《中国物理 B》2016,25(2):24303-024303
The experimental measurements and numerical simulations are performed to study ultrasonic nonlinear responses from the plastic deformation in weld joints. The ultrasonic nonlinear signals are measured in the plastic deformed30Cr2Ni4 Mo V specimens, and the results show that the nonlinear parameter monotonically increases with the plastic strain, and that the variation of nonlinear parameter in the weld region is maximal compared with those in the heat-affected zone and base regions. Microscopic images relating to the microstructure evolution of the weld region are studied to reveal that the change of nonlinear parameter is mainly attributed to dislocation evolutions in the process of plastic deformation loading. Meanwhile, the finite element model is developed to investigate nonlinear behaviors of ultrasonic waves propagating in a plastic deformed material based on the nonlinear stress–strain constitutive relationship in a medium. Moreover, a pinned string model is adopted to simulate dislocation evolution during plastic damages. The simulation and experimental results show that they are in good consistency with each other, and reveal a rising acoustic nonlinearity due to the variations of dislocation length and density and the resulting stress concentration.  相似文献   

13.
The temperature dependence of velocity and attenuation for the longitudinal ultrasonic waves propagating along the (100) direction has been measured in the vicinity of the upper transition temperature under the various electric conditions in Rochelle salt.  相似文献   

14.
超声楔形换能器的体波和瑞利表面波指向性图案   总被引:3,自引:0,他引:3       下载免费PDF全文
严仁博 《物理学报》1974,23(6):41-50
对超声检测中常用的楔形换能器的远场作了分析和实验。在理论上给出了在半无限大各向同性介质中纵波和横波指向性图案,以及在介质表面的瑞利波指向性图案。对于钢介质,对这三种波型作了指向性图案的数字计算,并对纵波和瑞利波作了指向性图案的测量。指出超声检测中某些需要考虑的问题。  相似文献   

15.
纵横波测已紧固螺栓轴向应力   总被引:5,自引:1,他引:4       下载免费PDF全文
本提出了用纵横波声时测已紧固螺栓轴向应力的一种新方法,解决了用超声精确地测已紧固螺栓应力问题,并且利用超声波沿轴向传播的波速同轴向应力以及三阶弹性常数的关系导出了螺栓应力同其材料声速特性、夹紧距离、温度及纵、横波声时的一种新关系,考虑了受应力作用时温度对声速的影响,简化了测量及计算过程,本还介绍了材料的声速特性实验及测量方法;实验结果表明应力低于250MPa,夹紧距离大于30mm时,应力超声测  相似文献   

16.
The anomalous ultrasonic attenuationα c of longitudinal waves propagating along (100) direction in KTaO3 has been analyzed above the phase transition temperature in the frequency range 150–300 MHz in the paraelectric phase. The attenuation of longitudinal ultrasonic waves in KTaO3 is primarily due to a strong interaction with thermally-excited phonons in the soft mode. Frequency and temperature variations of attenuation are discussed.  相似文献   

17.
We study a combustion-radiation model which models premixed flames propagating in a gaseous mixture with inert dust. This model combines diffusion of mass and temperature with reaction at the flame front. We choose a free boundary model to describe the propagating flames and take a linearized approximation to model the radiation, but we keep a nonlinear reaction term which is temperature dependent. The radiative transfer of thermal energy emitted and absorbed by dust is modelled using the Eddington equation. We analyse the bifurcation diagram of the travelling wave solution curve. In a specific parameter plane, travelling waves are given by a single smooth curve which is parameterized by the flame temperature.  相似文献   

18.
The ultrasonic velocity V and attenuation A of both longitudinal and shear waves in an anisotropic NdFeB magnet were measured over the temperature range from 80K to 300 K by the pulse echo method. The anisotropy of the ultrasonic wave propagating in a NdFeB magnet was observed. Anomalous changes in both V-T and A-T curves in the temperature range of 110-160 K were found, which might be due to the spin reorientation phase transition of Nd2Fe14B.  相似文献   

19.
A numerical model is established to investigate the influence of transparent coating thickness on the laser-generated thermoelastic force source and ultrasound waves in the coating-substrate system by using the finite element method (FEM). Taking into account the effects of thermal diffusion, the finite width and duration of the laser source, as well as the temperature dependence of material properties, the transient temperature distributions are obtained firstly. Applying this temperature field to structure analyses as thermal loading, the thermoelastic stress field and laser-generated ultrasound wave in the specimen are obtained. The generation and propagation of the laser thermoelastically induced stress field and ultrasonic waves in coating-substrate system are presented in detail. The influence of transparent coating thickness on the transient temperature distribution, thermoelastic force source and the laser-generated ultrasound waveforms is investigated. The numerical results indicate that the thermoelastic force source and laser-generated ultrasound waveform are strongly affected by the coating thickness due to the constraint of coating. This method can provide insight into the generation and propagation of the laser-generated stress field in coating-substrate system consisting of a transparent coating and an opaque metallic substrate. It provides theoretical basics to optimize ultrasonic signal generation in particular applications and invert the physical and geometrical parameter of the coating-substrate system more accurately in the experiment.  相似文献   

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