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飞秒相干瞬态过程的Bloch方程描述 被引量:7
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作者 余向阳 周建英 《中山大学学报(自然科学版)》 CAS CSCD 北大核心 1999年第2期24-27,共4页
用Laplace变换法求解了光学Bloch方程的解析解。
关键词 相干瞬态过程 BLOCH方程 相位谱 光学 飞秒尺度
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Ultrafast Excited State Dynamics of t^rans-4-Aminoazobenzene Studied by Femtosecond Transient Absorption Spectroscopy
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作者 Ya-ping Wang Song Zhang +2 位作者 Si-mei Sun Kai Liu Bing Zhang 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2013年第6期651-655,I0003,共6页
The ultrafast excited state dynamics of trans-4-aminoazobenzene (trans-4-AAB) in ethanol was investigated by femtosecond transient absorption spectroscopy. After being excited to the S2 state by 400 nm, trans-4-AAB ... The ultrafast excited state dynamics of trans-4-aminoazobenzene (trans-4-AAB) in ethanol was investigated by femtosecond transient absorption spectroscopy. After being excited to the S2 state by 400 nm, trans-4-AAB decays from the S2 state to the hot S1 state by internal conversion with time constant of -70 fs. The photoisomerization through inversion mechanism on the S1 potential energy surface and the internal conversion from the S1 state to the hot So state are observed, respectively. The average timescale of these two decay pathways is -0.7 ps. And the vibrational cooling of the hot So state of cis- and trans-4- AAB occur with time constants of -4 and N13 ps, respectively. Furthermore, the ultrafast intersystem crossing process are also observed. The timescale of intersystem crossing from the S2 state to the T4 state is about 480 ps while from the S1 state to the T2 state is -180 ps. 展开更多
关键词 PHOTOISOMERIZATION trans-4-AAB Femtosecond transient absorption spec- troscopy Intersystem crossing
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Progress in femtochemistry and femtobiology 被引量:3
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作者 WANG ShuFeng GONG QiHuang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2011年第12期2103-2108,共6页
Femtoscience offers a unique way to understand the dynamics in physics, chemistry and biology. This subject focuses on the process happening at femto-to pico-second time scale by femtosecond optical methods. Widely us... Femtoscience offers a unique way to understand the dynamics in physics, chemistry and biology. This subject focuses on the process happening at femto-to pico-second time scale by femtosecond optical methods. Widely used in chemistry it reveals chemical reactions, including bond breaking, forming, and stretching, which happens at an ultrafast time scale. Femtoscience is also important in the biological system, for example, light harvesting system and vision system. Femtoscience in physics is also widely used, but it is not studied in this paper. Instead, we report new advances in femtochemistry and femtobiology, including structural dynamics, coherent control, enzyme function dynamics and hydration in the protein system. We also introduce attosecond science, focusing on electron dynamics at an extreme short time scale. 展开更多
关键词 FEMTOSECOND ultrafast electron diffraction coherent control PROTEIN ATTOSECOND
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