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COMSOL光学仿真专题

于 2020-07-01 发布
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关于光学的COMSOL仿真分析,可以作为参照的例子进行练习InTechc0 fmod multiohydicd解决方案·几何光学粒子追踪模块波动光学RF模块W问m仿真智领创新Simulating inspires innovationInTech主要特征Luneburg透镜粒子追踪现在是可用的物理接口:一利用 COMSOL求解基于有限元问題的强大求解景一轻松模拟成百上千的粒子能使用参数扫描磁透镜可指定粒子的边界条件解储存于模型而非在后处理射计算隐式时间步进支持粒子/场相互作用预定义力作为模型中可用在C.CO四极质谱仪Hamilton算子允许模拟光线追踪新的后处理工具仿真智领创新Simulating inspires innovationInTech光学隐身com仿真智领创新Simulating inspires innovationInTechameland透镜仿真智领创新Simulating inspires innovationInTech模块理论基础RF Radio Frequency(Electromagnetic Waves)3kHz-300GHz高频电磁波电尺寸=结构尺寸/波长>1/100基于经典 Maxwell d磁理论。A+Y×xA)=0时域分析OAot ratVx(u-VXE)-oEE=0频域分析X(EVxHH=0仿真智领创新Simulating inspires innovationInTech电磁波领域研宽課题电磁波的产生各种波源的辐射机制电磁波的传播听射/千涉WdoC反射/折射/散射/吸收光电/热/力效应仿真智领创新Simulating inspires innovationInTech数值分析散射分析散射强度透射/反射率波导分析一模式:坜分布,传播常数透射/反射率腔模分析共振频率品质因子噼态传播/非线性效应docin. col一群速度(色散)倍频产生、自聚焦、自相位调制等多场耦合光与热,电,磁,力特性的耦合仿真智领创新Simulating inspires innovationInTech纳米光子学仿真需求纳米材料/结构的光学特性光纤/波导波导分析纳米光子学器件激光器纳米光子学隐形斗篷稳态传输特性分析光刻纳米结构的光镊/先光势阱光学制备、表征方法分子探测瞬态/非线性效应分析仿真智领创新Simulating inspires innovation

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