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Properties of multi-Gaussian Schell-model beams carrying an edge dislocation propagating in oceanic turbulence 被引量:1
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作者 Da-Jun Liu Yao-Chuan Wang +2 位作者 Gui-Qiu Wang hong-ming yin Hai-Yang Zhong 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第10期360-366,共7页
Based on the theory of coherence, the model of multi-Gaussian Schell-model(MGSM) beams carrying an edge dislocation generated by the MGSM source is introduced. The analytical cross-spectral density of MGSM beams carry... Based on the theory of coherence, the model of multi-Gaussian Schell-model(MGSM) beams carrying an edge dislocation generated by the MGSM source is introduced. The analytical cross-spectral density of MGSM beams carrying an edge dislocation propagating in oceanic turbulence is derived, and used to study the evolution properties of the MGSM beams carrying an edge dislocation. The results indicate that the MGSM beam carrying an edge dislocation propagating in oceanic turbulence will evolve from the profile with two intensity peaks into a flat-topped beam caused by the MGSM source, and the beam will evolve into the Gaussian-like beam due to the influences of oceanic turbulence in the far field.As the propagation distance increases, the MGSM beam carrying an edge dislocation propagating in oceanic turbulence with the larger rate of dissipation of mean-squared temperature(χT) and ratio of temperature to salinity contribution to the refractive index spectrum(?) or the smaller rate of dissipation of kinetic energy per unit mass of fluid(ε) evolves into the flat-topped beam or a Gaussian beam faster. 展开更多
关键词 OCEANIC TURBULENCE multi-Gaussian Schell-model source edge DISLOCATION laser propagation average intensity
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Detection of OH Radical in the Photodissociation of p-Aminobenzoic Acid at 266 nm
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作者 Can-hua Zhou Shi-bo Cheng +1 位作者 hong-ming yin Guo-zhong He 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2009年第6期681-685,I0003,共6页
Photodissociation of p-aminobenzoic acid at 266 nm was investigated by probing the nascent OH photoproduct employing the laser-induced fluorescence technique. It was found that the nascent OH radical was vibrationally... Photodissociation of p-aminobenzoic acid at 266 nm was investigated by probing the nascent OH photoproduct employing the laser-induced fluorescence technique. It was found that the nascent OH radical was vibrationally cold and its rotational state distribution conformed to be a Boltzmann behavior, characterized by a rotational temperature of 1040±110 K. The rotational energy of OH was determined to be 8.78±0.84 kJ/mol. Between the two spinorbit states of OH, ^2Ⅱ3/2 and ^2Ⅱ1/2, the former was found to be preferentially populated. The distribution of the II(A') state for the A-doublet was dominant. Finally, a probable mechanism for the formation of OH produced from the photodissociation of p-aminobenzoic acid is discussed. 展开更多
关键词 PHOTODISSOCIATION OH radical p-aminobenzoic acid Laser-induced fluorescence technique
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Excited State Trap in Erbium Doped Borate Glass
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作者 Kai Huang Feng Zhang +1 位作者 Feng-Jiao Zhao hong-ming yin 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2022年第2期369-374,I0003,共7页
Erbium doped borate glass is widely used in luminescent materials,the luminescence dynamics of erbium doped borate glass is of great significance for optimizing and improving the luminous efficiency.The 2%molar ratio ... Erbium doped borate glass is widely used in luminescent materials,the luminescence dynamics of erbium doped borate glass is of great significance for optimizing and improving the luminous efficiency.The 2%molar ratio erbium doped borate glass was synthesized by the traditional melt quenching method,and annealed at 260℃below the borate glass transition temperature.The thermal performance parameters of borate glass undoped and doped with Er^(3+) were measured by differential scanning calorimetry with 10℃/min.The transient emission spectrum and decay kinetics curves were measured for the luminescence mechanism of erbium doped borate.Er^(3+) ions have different lifetime when emitted at 556 nm with different excitation wavelengths,the excited state trap may exist in erbium doped borate glass. 展开更多
关键词 EXCITED TRAP Erbium doped Borate glass
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