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溶液中离子-偶极子俘获力常数及离子内氛重组能标度
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作者 步宇翔 《化学研究与应用》 CAS CSCD 1994年第4期21-26,共6页
本文基于重组现象改进的自交换模型及离子-偶极子俘获力场势,提出了描述外氛电子转移机理中溶液离子内氛重组织效应的能量指标的一种新的标度方法,并对公式中所含参数利用离子-偶极子俘获力场势进行了确定。结果表明该方法有效地改... 本文基于重组现象改进的自交换模型及离子-偶极子俘获力场势,提出了描述外氛电子转移机理中溶液离子内氛重组织效应的能量指标的一种新的标度方法,并对公式中所含参数利用离子-偶极子俘获力场势进行了确定。结果表明该方法有效地改进了前人的工作,取得了与实验光谱标度数据一致的结论,并与光发射实验结果吻合较好。它避免了因缺乏溶液中可信的振动光谱数据在计算内氛重组能上的困难,通过易得的离子和配体的性质参数给出了一种简便而精确的计算方案。 展开更多
关键词 内氛重组能标度 离子-偶极子 俘获力场势
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Photon retention in coherently excited nitrogen ions 被引量:4
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作者 Jinping Yao Luojia Wang +12 位作者 Jinming Chen Yuexin Wan Zhihao Zhang Fangbo Zhang Lingling Qiao Shupeng Yu Botao Fu Zengxiu Zhao Chengyin Wu Vladislav VYakovlev Luqi Yuan Xianfeng Chen Ya Cheng 《Science Bulletin》 SCIE EI CSCD 2021年第15期1511-1517,M0003,共8页
Quantum coherence in quantum optics is an essential part of optical information processing and light manipulation.Alkali metal vapors,despite the numerous shortcomings,are traditionally used in quantum optics as a wor... Quantum coherence in quantum optics is an essential part of optical information processing and light manipulation.Alkali metal vapors,despite the numerous shortcomings,are traditionally used in quantum optics as a working medium due to convenient near-infrared excitation,strong dipole transitions and long-lived coherence.Here,we proposed and experimentally demonstrated photon retention and subsequent re-emittance with the quantum coherence in a system of coherently excited molecular nitrogen ions(N_(2)^(+))which are produced using a strong 800 nm femtosecond laser pulse.Such photon retention,facilitated by quantum coherence,keeps releasing directly-unmeasurable coherent photons for tens of picoseconds,but is able to be read out by a time-delayed femtosecond pulse centered at 1580 nm via two-photon resonant absorption,resulting in a strong radiation at 329.3 nm.We reveal a pivotal role of the excited-state population to transmit such extremely weak re-emitted photons in this system.This new finding unveils the nature of the coherent quantum control in N_(2)^(+)for the potential platform for optical information storage in the remote atmosphere,and facilitates further exploration of fundamental interactions in the quantum optical platform with strong-field ionized molecules. 展开更多
关键词 Quantum coherence Photon retention Coherent quantum control Strong-field ionized molecules
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