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1)  StrongField Excitation Spectrum
强场激发
2)  Strong laser field
强激光场
1.
The numerical solutions of the one dimensional model of strong laser field are calculated by using the Wronskian preserving and symplectic scheme.
提出辛算法是保Wronskian守恒的算法 ,把辛算法应用于强激光场一维模型的计算中 。
3)  Intense laser field
强激光场
1.
Effects of static electric field on high-order harmonic generation of hydrogen atom in intense laser field;
静电场对强激光场中氢原子产生高次谐波的影响
2.
Studies of stabilization of one-dimensional atom in the intense laser field with pseudospectral method;
用伪谱方法研究强激光场中一维原子的稳定性
3.
Investigation of high order harmonic generation and ionization of model hydrogen atoms and real hydrogen atom in intense laser field;
强激光场中模型氢原子和真实氢原子的高次谐波与电离特性研究
4)  intense laser fields
强激光场
1.
The influence of molecular ground state wave function on high-order harmonic generation from N_2 molecules in intense laser fields;
基态分子波函数对N_2分子在强激光场中产生高次谐波的影响
2.
A new Pseudospectra-Taylor series method for solving the time-dependent Schr?dinger (equation) has been developed and applied to the atom in intense laser fields.
并将该方法用于强激光场中氢原子含时波函数和高次谐波谱的计算,得到了与经典三步模型解释以及实验现象相符的结果。
5)  high intense laser
强场激光
6)  exciting laser intensity
激发光强
1.
After analyzed,the exciting laser intensity,the coverage rate and the numerical aperture of objectives are selected for experimental research.
经分析选取了激发光强、覆盖率和物镜的数值孔径作为实验研究对象。
补充资料:晶体中的元激发(见固体中的元激发)


晶体中的元激发(见固体中的元激发)
elementary excitation in crystal

  晶体中的元激发eleme讯ary excitation Incrvstal见固体中的元激发。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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