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Phase Shifts during Interaction between Two Solitons in Two-Dimensional Dusty Plasma
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作者 栗生长 吴利华 +1 位作者 林麦麦 段文山 《Chinese Physics Letters》 SCIE CAS CSCD 2007年第8期2312-2315,共4页
The dust acoustic solitary waves propagating in two different directions in two-dimensional dusty plasma are investigated. In order to study the soliton interactions in multi-dimensional systems, we extend the reducti... The dust acoustic solitary waves propagating in two different directions in two-dimensional dusty plasma are investigated. In order to study the soliton interactions in multi-dimensional systems, we extend the reductive perturbation method and obtain two Kortewe-de Vries equations for nonlinear waves in both the ξ and 77 directions, respectively. The phase shifts after collision of two solitons with arbitrary angle are given. Finally, the solution of na up to O(ε^4) order is obtained. 展开更多
关键词 ACOUSTIC-WAVES SOLITARY WAVES VORTEX-LIKE
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Modulational instability for a self-attractive two-component Bose-Einstein condensate
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作者 栗生长 段文山 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第10期4177-4181,共5页
By means of the multiple-scale expansion method, the coupled nonlinear Schrgdinger equations without an explicit external potential are obtained in two-dimensional geometry for a self-attractive Bose-Einstein condensa... By means of the multiple-scale expansion method, the coupled nonlinear Schrgdinger equations without an explicit external potential are obtained in two-dimensional geometry for a self-attractive Bose-Einstein condensate composed of different hyperfine states. The modulational instability of two-component condensate is investigated by using a simple technique. Based on the discussion about two typical cases, the explicit expression of the growth rate for a purely growing modulational instability and the optimum stable conditions are given and analysed analytically. The results show that the modulational instability of this two-dimensional system is quite different from that in a one-dimensional system. 展开更多
关键词 modulational instability Bose-Einstein condensate multiple-scale expansion method
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Controllable optical bistability of Bose-Einstein condensate in an optical cavity with a Kerr medium 被引量:1
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作者 郑强 栗生长 +2 位作者 张小平 游泰杰 傅立斌 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第9期229-233,共5页
We study the optical bistability for a Bose-Einstein condensate of atoms in a driven optical cavity with a Kerr medium. We find that both the threshold point of optical bistability transition and the width of optical ... We study the optical bistability for a Bose-Einstein condensate of atoms in a driven optical cavity with a Kerr medium. We find that both the threshold point of optical bistability transition and the width of optical bistability hysteresis can be controlled by appropriately adjusting the Kerr interaction between the photons. In particular, we show that the optical bistability will disappear when the Kerr interaction exceeds a critical value. 展开更多
关键词 Bose-Einstein condensate optical bistability Kerr interaction
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The interaction of nonlinear waves in two-dimensional lattice
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作者 杨晓霞 段文山 +1 位作者 栗生长 韩久宁 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第8期2989-2993,共5页
This paper investigates the collision between two nonlinear waves with arbitrary angle in two-dimensional nonlinear lattice. By using the extended Poincarge-Lighthill-Kuo perturbation method, it obtains two Korteweg-d... This paper investigates the collision between two nonlinear waves with arbitrary angle in two-dimensional nonlinear lattice. By using the extended Poincarge-Lighthill-Kuo perturbation method, it obtains two Korteweg-de Vries equations for nonlinear waves in both the ζ and η directions, respectively, and derives the analytical phase shifts after the collision of two nonlinear waves. Finally, the solution of u(υ) up to O(ε^3) order is given. 展开更多
关键词 nonlinear waves two-dimensional nonlinear lattice phase shift
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Rosen-Zener Transition in a Nonlinear System for Two-Component Bose-Einstein Condensates in Optical Lattices
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作者 姜欣 林麦麦 +1 位作者 栗生长 段文山 《Chinese Physics Letters》 SCIE CAS CSCD 2009年第1期88-91,共4页
We study the Rosen-Zener transition (RZT) in a nonlinear system for two-component Bose-Einstein condensates in optical lattices. It is found that the percentage of the components could affect the quantum transition ... We study the Rosen-Zener transition (RZT) in a nonlinear system for two-component Bose-Einstein condensates in optical lattices. It is found that the percentage of the components could affect the quantum transition dramatically. For the component with large percentage it is equivalent that the effect of the nonlinearity is stronger, whereas for the component with small percentage the effect is weaker. We also find that the nonlinearity c11 can affect the quantum transition dramatically. This is similar to that reported from Ref. [14]. Compared with one-component systems, however, the effect of the nonlinearity is decreased due to the two components of the BEGs in optical lattices. Furthermore, the effect of the coupling nonlinearity between two components c12 is studied. The component with large percentage is more affected by the nonlinearity than that with small-percentage component. 展开更多
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Periodic modulation of adiabatic dynamics in non-reciprocal Landau-Zener systems
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作者 Rong Chang Sheng-Chang Li 《Chinese Physics B》 2025年第3期259-264,共6页
The control of adiabatic dynamics is essential for quantum manipulation.We investigate the effects of both periodic modulating field and linear sweeping field on adiabatic dynamics based on a non-reciprocal Landau-Zen... The control of adiabatic dynamics is essential for quantum manipulation.We investigate the effects of both periodic modulating field and linear sweeping field on adiabatic dynamics based on a non-reciprocal Landau-Zener model with periodic modulation.We obtain adiabatic phase diagrams in the(ω,δ)parameter space,where the adiabatic region is bounded by the modulating frequencyωgreater than a critical valueω_(c) and the non-reciprocal parameterδless than one.The results show that the adiabaticity of the system is not sensitive to the modulating amplitude.We find that the critical modulating frequency can be expressed as a power function of the modulating period number or the sweeping rate.Our findings suggest that one can change the adiabatic region or improve the adiabaticity by adjusting the parameters of both the modulating and the sweeping fields,which provides an effective means to flexibly control the adiabatic dynamics of non-reciprocal systems. 展开更多
关键词 adiabaticity non-reciprocity Landau-Zener tunneling periodic modulation
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