O431 96031401双模量子光场驱动的喇曼型光致离化系统中原子的相干俘获=Atomic coherenttrapping in theRaman—type photoionization system drivenby a two-mode quantized field[刊,中]/李高翔,彭金生,黄徽(华中师范大学物理系.湖北...O431 96031401双模量子光场驱动的喇曼型光致离化系统中原子的相干俘获=Atomic coherenttrapping in theRaman—type photoionization system drivenby a two-mode quantized field[刊,中]/李高翔,彭金生,黄徽(华中师范大学物理系.湖北,武汉(430070))//光学学报.—1995,15(9).—1153—1158研究了由双模量子光场驱动的喇曼(Raman)型光致离化系统中原子的相干俘获性质,分析了反映原子-光场耦合性质的参量对系统相干俘获的影响,论证了在一定的条件下,双模SU(2)展开更多
Using the mutually coherent function, the self-trapping of the circle partially coherent optical beam in the total internal reflective photonic crystal fiber(TIRPCF) under Compton scattering is studied. The study show...Using the mutually coherent function, the self-trapping of the circle partially coherent optical beam in the total internal reflective photonic crystal fiber(TIRPCF) under Compton scattering is studied. The study shows that the composition of the non-coherent optical beam in the optical spectrum and the diffraction effect are decreased by Compton scattering, and the probability of forming the soliton is greatly increased. The vibration peak value in the propagation, compressed degree, changed cycle, and radius of the soliton are all smaller than those before the scattering, but its coherent radius is larger than that before the scattering. In this propagation, the self-focusing plays a key role.展开更多
文摘O431 96031401双模量子光场驱动的喇曼型光致离化系统中原子的相干俘获=Atomic coherenttrapping in theRaman—type photoionization system drivenby a two-mode quantized field[刊,中]/李高翔,彭金生,黄徽(华中师范大学物理系.湖北,武汉(430070))//光学学报.—1995,15(9).—1153—1158研究了由双模量子光场驱动的喇曼(Raman)型光致离化系统中原子的相干俘获性质,分析了反映原子-光场耦合性质的参量对系统相干俘获的影响,论证了在一定的条件下,双模SU(2)
基金Natural Science Basic Research Project for Education Depart ment of Henan Province Natural ScienceFoundation of Zhumadian City(058001)
文摘Using the mutually coherent function, the self-trapping of the circle partially coherent optical beam in the total internal reflective photonic crystal fiber(TIRPCF) under Compton scattering is studied. The study shows that the composition of the non-coherent optical beam in the optical spectrum and the diffraction effect are decreased by Compton scattering, and the probability of forming the soliton is greatly increased. The vibration peak value in the propagation, compressed degree, changed cycle, and radius of the soliton are all smaller than those before the scattering, but its coherent radius is larger than that before the scattering. In this propagation, the self-focusing plays a key role.