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半经典理论的英文

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"半经典理论"怎么读用"半经典理论"造句

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  • semiclassical theory

例句与用法

  • Lamb ' s semiclassical theory
    兰姆半经典理论
  • And by means of semiclassical theory , the changes of hhg for realistic hydrogen atom in the static electric field is explained
    借助于半经典理论,解释了在静电场作用下高次谐波发生变化的机制。
  • On the basis of the gutzwiller trace formula , the semiclassical theory of the chaotic system is developed successfully
    在古兹维勒( gutzwiller )迹方程的基础上,混沌系统的半经典理论得到很大发展。
  • Using the semiclassical theory , we calculate the correction of the detuning to the absorption and dispersion , and we investigate the impact of the one - photon detuning under the exact two - photon resonance to large kerr nonlinearity and photon switching based eit
    我们利用半经典理论计算失谐量对吸收和色散的修正,分析双光子共振条件下的单光子失谐量对基于eit的强kerr效应和光子开关行为的作用。
  • The key components in laser gyro is he - ne ring laser , and the reciprocal action theory between light and medium is the base in studying the ring laser , use the lamb half classical theory , and on the base of density matrix theory , the optical brounch equation was established , which described the movement of amplifying medium atom in the ring syntonic cavity , and according to the medium polarize theory the self consistent equations was deduced , which describe the light intensity and phasic of the counter - propagating wave . on the basis of this equations , adopted the simulation software matlab and virtual instrument programming language labwindows / cvi , we can do some simulated experiments in study the phenomenas such as amplify and dispersive characteristic of medium , mode pushing effection , burned hole effection and pattern competition , lock - in of frequency and the characteristic of light intensity and phasic of the counter - propagating wave in laser gyro
    激光陀螺的核心部件为he - ne环形激光器,而掌握光与介质的相互作用理论是研究激光器的关键,采用拉姆半经典理论为主,在密度矩阵理论的基础上,推导环形谐振腔中描述he - ne气体增益介质原子运动的光学布洛赫方程,运用介质极化理论得出描述激光陀螺反向行波的光强、位相所满足的自洽场方程组,在此基础上,运用matlab仿真软件和虚拟仪器编程语言labwindows / cvi ,对激光陀螺中的介质增益色散特性、频率牵引效应、烧孔效应及模竞争、闭锁效应及环激光的光强和相位特性进行仿真试验研究,并且运用全量子理论,对激光工作原理进行分析,得出二能级系统单模辐射场的光子数密度分布,得出激光场的光子统计分布,仿真激光场的动态建立过程。
  • All cross sections of neutron induced reaction , elastic scattering angular distribution , neutron energy spectrum and double differential cross sections were calculated by using optical model and the semi - classical model of multi - step nuclear reaction processes based on the hauser - feshbach and exciton model in the energy region up to 20mev
    应用光学模型和以复合核平衡态理论( hauser ? feshbach理论)及激子模型为基础的核反应多步过程的半经典理论,计算了当中子入射能量低于20mev时n + ~ ( 112120 ) sn反应的所有中子入射截面、弹性散射角分布、出射中子能谱以及出射中子双微分截面。
  • In this thesis , a semi - classical model of the force on an atom is used to describe the motion of a two - level atom interacting with a standing wave laser field . the velocity dependent force and momentum diffusion are derived through optical bloch equations by using the matrix form of the continued fraction technique . by investigating the dynamic properties of atoms in laser field , we can control and manipulate the mechanical motion of an atom
    本文利用半经典理论,从二能级原子在激光驻波场中所满足的运动方程出发,推导出密度矩阵元所满足的递推关系,利用矩阵连分数方法求解出密度矩阵元,从而求出依赖于原子运动速度的光压力与动量扩散系数,通过讨论原子在激光场中的动力学行为,为原子在激光场中被囚禁、形成原子列阵以及可控制的量子态,从而为量子信息处理提供理论基础。
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