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Chinese Physics, 2005, Vol. 14(7): 1317-1322    DOI: 10.1088/1009-1963/14/7/009
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A systematic approximate method for the study of evolution problem beyond rotating wave approximation

Zhang Zheng-Jie (张正阶)a, Wang Ke-Lin (汪克林)b, Qin Gan (秦敢)b 
a College of Information Engineering, Chengdu University of Technology, Chengdu 610059, China; b Center of Nonlinear Science, Department of Astronomy and Applied Physics, University of Science and Technology of China, Hefei 230026, China
Abstract  By a model of a two-level particle coupled with boson field, we made it clear that an evolution problem can be solved beyond the rotating wave approximation. We have applied the coherent approximation method, which had been proved to be effective in dealing with stationary state problems of polaron, to the evolution problem of the system mentioned above. The results obtained showed that the coherent approximation method is effective to treat the evolution problem, and, in general cases, the non-rotating wave terms in Hamiltonian should not be ignored. Our results may provide a deep physical insight for further experiments to test the effects of non-rotating wave terms.
Keywords:  coherent approximation method      non-rotating wave terms      Jaynes--Cummings model  
Received:  18 November 2004      Revised:  21 March 2005      Accepted manuscript online: 
PACS:  42.50.-p (Quantum optics)  
  05.30.Jp (Boson systems)  

Cite this article: 

Zhang Zheng-Jie (张正阶), Wang Ke-Lin (汪克林), Qin Gan (秦敢) A systematic approximate method for the study of evolution problem beyond rotating wave approximation 2005 Chinese Physics 14 1317

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