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- W2077264322 abstract "A new and highly efficient algorithm developed under MATLAB for calculating the optical spectra generated by non-resonant optical parametric fluorescence is presented. This algorithm, which allows quick simulation of the spectra, is shown to be much more rapid than standard ones. The ways to modify the algorithm for other environments are discussed. Title of the program: OPFSpectraFinder Catalogue number: ADTK Program summary URL: http://cpc.cs.qub.ac.uk/summaries/ADTK Program obtainable from: CPC Program Library, Queen's University of Belfast, N. Ireland Licensing provisions: Persons requesting the program must sign the standard CPC non-profit use license Computers on which the program has been tested: Intel Pentium, SUN HPC3500 Operating system under which the program, has been tested: Microsoft Windows 2000, Unix Solaris 7.0 Programming language used: MATLAB 6.0 Memory required to execute with typical data: 256 M (the total computer memory) No. of processors used: 1 No. of bytes in distributed program, including test data, etc.: 935 376 No. of lines in distributed program, including test data, etc.: 6667 Distribution format: tar gzip file Nature of physical problem: Obtaining the form of optical spectra of light generated in the process of optical parametric fluorescence in a periodically poled quadratically nonlinear medium Method of solution: Linearization of the set of nonlinear equations, obtaining the set of equations with constant coefficients, finding the solution as the matrix exponential Restrictions on the complexity of the problem: not known Typical running time: 80 seconds for obtaining the data for data set by default in the files submitted on a PC mentioned above References: The physical discussion is given in V. Beskrovnyy, P. Baldi, Optical parametric fluorescence spectra in periodically poled media, Optics Express 10 (2002) 990" @default.
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- W2077264322 date "2004-07-01" @default.
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- W2077264322 title "A new algorithm for fast simulation of optical spectra generated in a nonlinear media" @default.
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