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作 者:Weizhu Bao Chunxiong Zheng
机构地区:[1]Department of Mathematics,National University of Singapore,Singapore 117543 [2]Department of Mathematical Sciences,Tsinghua University,Beijing,100084,P.R.China.
出 处:《Communications in Computational Physics》2007年第1期123-140,共18页计算物理通讯(英文)
基 金:support from the National University of Singapore grant No.R-146-000-081-112;C.Zheng acknowledges the support by National Natural Science Foundation of China(No.10401020);his extended visit at National University of Singapore.
摘 要:This paper introduces an extension of the time-splitting spectral(TSSP)method for solving a general model of three-wave optical interactions,which typically arises from nonlinear optics,when the transmission media has competing quadratic and cubic nonlinearities.The key idea is to formulate the terms related to quadratic and cubic nonlinearities into a Hermitian matrix in a proper way,which allows us to develop an explicit and unconditionally stable numerical method for the problem.Furthermore,the method is spectral accurate in transverse coordinates and second-order accurate in propagation direction,is time reversible and time transverse invariant,and conserves the total wave energy(or power or the norm of the solutions)in discretized level.Numerical examples are presented to demonstrate the efficiency and high resolution of the method.Finally the method is applied to study dynamics and interactions between three-wave solitons and continuous waves in media with competing quadratic and cubic nonlinearities in one dimension(1D)and 2D.
关 键 词:Nonlinear optics three-wave time-splitting spectral method energy continuous wave soliton.
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