Non-relativistic particle higher-order harmonic radiation based short-wavelength laser and the operation stability

Under classical mechanics,the general equation of particle motion in the periodic field is derived.In the dampless case,the existence possibility of the higher-order harmonic radiation is explored by using Bessel function expansion of a generalized trigonometrical function and the multi-scale method...

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Published inOptoelectronics letters Vol. 7; no. 4; pp. 313 - 316
Main Author 罗晓华 吴木营 何为 邵明珠 罗诗裕
Format Journal Article
LanguageEnglish
Published Heidelberg Tianjin University of Technology 01.07.2011
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Summary:Under classical mechanics,the general equation of particle motion in the periodic field is derived.In the dampless case,the existence possibility of the higher-order harmonic radiation is explored by using Bessel function expansion of a generalized trigonometrical function and the multi-scale method.In the damping case,the critical properties and a chaotic behavior are discussed by the Melnikov method.The results show that the use of a higher-order harmonic radiation of non-relativistic particles as a short-wavelength laser source is perfectly possible,and the system critical condition is related to its parameters.only by adjusting parameters suitablely,the stable higher-order harmonic radiation with bigger intensity can be obtained.
Bibliography:12-1370/TN
Under classical mechanics,the general equation of particle motion in the periodic field is derived.In the dampless case,the existence possibility of the higher-order harmonic radiation is explored by using Bessel function expansion of a generalized trigonometrical function and the multi-scale method.In the damping case,the critical properties and a chaotic behavior are discussed by the Melnikov method.The results show that the use of a higher-order harmonic radiation of non-relativistic particles as a short-wavelength laser source is perfectly possible,and the system critical condition is related to its parameters.only by adjusting parameters suitablely,the stable higher-order harmonic radiation with bigger intensity can be obtained.
LUO Xiao-hua,WU Mu-ying,HE Wei,SHAO Ming-zhu,and LUO Shi-yu 1.College of Electric Engineering,Chongqing University,Chongqing 400044,China 2.Library,Chongqing University of Communications,Chongqing 400074,China 3.College of Electronic Engineering,Dongguan University of Technology,Dongguan 523106,China
ISSN:1673-1905
1993-5013
DOI:10.1007/s11801-011-0018-y