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1.
微扰技术用于大振幅驻波理论   总被引:1,自引:0,他引:1  
微扰技术(即逐步求近法)曾误用于大振幅驻波理论数十年,给出可疑的、不稳定结果.究其原因是前人在解非线性波动方程时,未能始终贯彻驻波基本性质所致.始终坚持驻波观点完全可以求得稳定解,与根据Riemann简单波所得严格解一致.这个问题说明,物理学家使用数学工具时,必须在物理原则指导下进行。  相似文献   

2.
弱光场中氢原子的稳定性   总被引:3,自引:0,他引:3       下载免费PDF全文
虑一个处在弱光场中的经典氢原子系统,运用直接微扰方法求出了该系统微扰解的一般形式,并给出了解有界的条件。分析结果表明,在一般情况下,氢原子的微扰解是无界的,因而系统是Lyapunov不稳定的,但在解有界的条件满足时,系统则是Lyapunov稳定的。  相似文献   

3.
微扰的耦合非线性薛定谔方程的近似求解   总被引:2,自引:0,他引:2       下载免费PDF全文
程雪苹  林机  王志平 《物理学报》2007,56(6):3031-3038
将直接微扰方法应用于可积的含修正项的非线性薛定谔方程,通过近似解与精确解的比较确定了直接微扰方法的可靠性.继而,将该方法应用于微扰的耦合非线性薛定谔方程,并获得了该微扰方程的可靠的近似解. 关键词: 直接微扰方法 微扰 耦合非线性薛定谔方程 近似解  相似文献   

4.
用参数微扰法求解了一维非线性谐振子及二维非线性耦合谐振子的一级近似本征能量.计算表明,参数微扰法的基态和激发态结果比相应的无参数微扰法的一级近似甚至多级近似结果精度有显著提高.  相似文献   

5.
程衍富  戴同庆 《中国物理 C》2006,30(10):944-949
应用多尺度微扰理论到广义非简谐振子, 得到了一阶经典和量子微扰解. 特别是 我们的量子解在极限条件下能方便地转变为经典解, 并且坐标和动量算符的对易 关系的简化十分自然. 与Taylor级数解相比较, 无论是在经典还是在量子解 中频率移动都出现在各阶振动表达式中, 所以多尺度微扰解是弱耦合非简谐振动的较好解法.  相似文献   

6.
王本仁 《物理学报》2002,51(4):823-827
孤子运动的Miles方程是一个具特征的非线性Schrdinger型方程.借求孤子解的微扰法,导出所遵循的矩阵方程,和孤子解的修正量δu(x,λ).并据双孤子解,计算了它的周期互作用状态 关键词: Miles方程 微扰双孤子解  相似文献   

7.
将直接微扰方法应用于含微扰的三维非线性Schrodinger方程,获得了该方程的包括零阶和一阶修正的近似解析解.借助得到的解析解,分析了微扰对孤子参数的影响.  相似文献   

8.
程雪苹  林机  韩平 《物理学报》2010,59(10):6752-6756
将直接微扰方法应用于含微扰的三维非线性Schrdinger方程,获得了该方程的包括零阶和一阶修正的近似解析解.借助得到的解析解,分析了微扰对孤子参数的影响。  相似文献   

9.
韩辉  严愿敏  寿倩 《光学学报》2019,39(5):261-268
在量子力学的微扰理论框架下,利用微扰法求解得到了1+2维强非局域非线性介质——铅玻璃中二阶微扰修正的"类拉盖尔高斯型"涡旋孤子的近似解析解。从非局域非线性薛定谔方程(NNLSE)出发,以铅玻璃中的真实折射率与Snyder-Mitchell(SM)模型中描述的抛物线型折射率的差值为微扰,以SM模型中的拉盖尔高斯孤子解为基态解,求得了铅玻璃材料中二阶微扰修正的"类拉盖尔高斯型"涡旋孤子的解析解。拓扑荷值分别为1、2、3、4的微扰修正的"类拉盖尔高斯型"光孤子比未加微扰的拉盖尔高斯型光孤子更稳定,非常接近孤子真解的传输行为。  相似文献   

10.
发展了一种基于分离变量法的非线性Schordinger方程的微扰论直接法。导出了微扰对亮孤子的一阶效应,即导出了孤子参数随时间的缓慢变化及微扰对孤子的一阶修正  相似文献   

11.
The ion-acoustic solitary wave in collisionless unmagnetized plasma consisting of warm ions-fluid and isothermal electrons is studied using the time fractional KdV equation. The reductive perturbation method has been employed to derive the Korteweg-de Vries equation for small but finite amplitude ion-acoustic wave in warm plasma. The Lagrangian of the time fractional KdV equation is used in a similar form to the Lagrangian of the regular KdV equation with fractional derivative for the time differentiation. The variation of the functional of this Lagrangian leads to the Euler-Lagrange equation that gives the time fractional KdV equation. The variational-iteration method is used to solve the derived time fractional KdV equation. The calculations of the solution are carried out for different values of the time fractional order. These calculations show that the time fractional can be used to modulate the electrostatic potential wave instead of adding a higher order dissipation term to the KdV equation. The results of the present investigation may be applicable to some plasma environments,such as the ionosphere plasma.  相似文献   

12.
Based on the basic equations of hydrodynamics, the nonlinear acoustic wave equation is obtained. By taking into account the boundary condition and properties of nonlinear standing wave, the equation is solved through perturbation method, and the stable expressions of fundamental wave and second harmonic are presented. The sound pressures in an ultrasonic cleaner are measured by hydrophones, and the relationship between the received voltages of hydrophones and the output voltages of the ultrasonic generator ...  相似文献   

13.
A wave equation for a time-dependent perturbation about the steady shallow-water solution emulates the metric an acoustic white hole, even upon the incorporation of nonlinearity in the lowest order. A standing wave in the sub-critical region of the flow is stabilised by viscosity, and the resulting time scale for the amplitude decay helps in providing a scaling argument for the formation of the hydraulic jump. A standing wave in the super-critical region, on the other hand, displays an unstable character, which, although somewhat mitigated by viscosity, needs nonlinear effects to be saturated. A travelling wave moving upstream from the sub-critical region, destabilises the flow in the vicinity of the jump, for which experimental support has been given.  相似文献   

14.
We study the nonlinear spin dynamics of Heisenberg helimagnet under the effect of electromagnetic wave (EM) propagation. The basic dynamical equation of the spin evolution governed by Landau–Lifshitz equation resembles the director dynamics of the twist in a cholestric liquid crystal. With the use of reductive perturbation technique the perturbation is invoked for the spin magnetization and magnetic field components of the propagating electromagnetic wave. A steady-state solution is derived for the weakly nonlinear regime and for the next order, the components turn around s plane perpendicular to the propagation direction. It is found that as the electromagnetic wave propagates in the medium, both the magnetization and magnetic field modulate in the form of kink soliton modes by introducing amplitude fluctuation in the tail part of the same.  相似文献   

15.
The problem of constructing of a uniform asymptotic approximation to the solution of the Boltzmann equation is solved for an attenuating small-amplitude standing wave in a stationary homogeneous gas in the limiting case of small Knudsen numbers ɛ. Using the multiscale technique, a regular approximation valid for time intervals up to ɛ−1 is obtained. It is shown that nonlinearity of the kinetic equation leads to violation of monochromaticity of the initial perturbation and changes the damping mode.  相似文献   

16.
A scheme is developed to study numerical solution of the time-fractional shock wave equation and wave equation under initial conditions by the homotopy perturbation method (HPM). The fractional derivatives are taken in the Caputo sense. The solutions are given in the form of series with easily computable terms. Numerical results are illustrated through the graph.  相似文献   

17.
Abstract

The aim of this paper is to study the formation of delta standing wave for a scalar conservation law with a linear flux function involving discontinuous coefficients. In order to deal with it, we approximate the discontinuous coefficients by piecewise affine ones and then apply the method of characteristics to construct a global solution to the original equation by approximation. Finally, it is proved rigorously that the delta standing wave can be obtained in the limit of the approximate solution as the perturbation parameter tends to zero. In contrast to the classical method of vanishing viscosity, it can be seen clearly here how the delta standing wave forms naturally along the characteristics.  相似文献   

18.
陈春丽  张近  李翊神 《中国物理》2007,16(8):2167-2179
An extended Boussinesq equation that models weakly nonlinear and weakly dispersive waves on a uniform layer of water is studied in this paper. The results show that the equation is not Painlev\'e-integrable in general. Some particular exact travelling wave solutions are obtained by using a function expansion method. An approximate solitary wave solution with physical significance is obtained by using a perturbation method. We find that the extended Boussinesq equation with a depth parameter of $1/\sqrt 2$ is able to match the Laitone's (1960) second order solitary wave solution of the Euler equations.  相似文献   

19.
Meng Lu  吕克利 《计算物理》2002,19(4):349-356
利用扰动法,由包括耗散和地形的准地转位涡度方程导出了强迫mKdV-Burgers方程,求得了小耗散情形下mKdV-Burgers方程的近似分析解,分析了mKdV孤波质量和能量的时间演变特性。对给定的局地地形,利用拟谱法对强迫mKdV-Burgers方程进行了数值求解。结果显示,小耗散的存在使弧波的振幅和移速随时间缓慢地减小,孤波宽度则随时间缓慢增大;在耗散和地形强迫的非线性系统中,在孤波与地形的相互作用中,耗散的存在使孤波在强迫区附近振荡传播,这有利于大振幅扰动的形成。  相似文献   

20.
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