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Decoherence is one of the most important obstacles that must be overcome in quantum information processing. It depends on the qubit-environment coupling strength, but also on the spectral composition ...
On the role of dynamical barriers in barrierless-reactions at low energies: S($^1$D) + H$_2$
Departamento de Qu待mica F待sica, Facultad de Qu待mica, Universidad Complutense Departamento de Qu待mica F待sica, Facultad de Qu待mica, Universidad Complutense Departamento de Qu待mica, Universidade de Coimbra,
2011/9/1
Reaction probabilities as a function of total angular momentum (opacity functions) and the resulting reaction cross-sections for the collision of open shell S(1D) atoms with para- hydrogen have been c...
期刊信息
篇名
Dynamical study on polaron formation in a metal/polymer/metal structure
语种
英文
撰写或编译
撰写
作者
C. Q. Wu,Y. Qiu,Z. An,K. Nasu
第一作者单位
刊物名称
Phys. Rev. B
页面
125416
出版日期
2003年
月
日
文章标识(ISSN)
相关项目
发光高聚物中...
Intrapulse Dynamical Effects in Multiphoton Processes: Theoretical Analysis
Intrapulse Dynamical Effects Multiphoton Processes:Theoretical Analysis
2014/9/24
Stationary and nonstationary multilevel models are formulated to analyze ultrafast multiphoton processes with emphasis on electronic and nuclear coherence of a near-resonant intermediate state. By ide...
Semiclassical approximations to quantum dynamical time correlation functions
Semiclassical approximations quantum dynamical time correlation functions
2014/9/24
Semiclassical approximations for quantum time correlation functions are presented for both electronically adiabatic and nonadiabatic dynamics along with discussions of the operator ordering and the cl...
The formulation of quantum statistical mechanics based on the Feynman path centroid density. II. Dynamical properties
quantum statistical mechanics Feynman path centroid density Dynamical properties
2014/9/24
The formulation of quantum dynamical time correlation functions is examined within the context of the path centroid variable in Feynman path integration. This study builds on the centroid-based approa...