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光泵亚毫米波激光的理论模型及计算方法(Ⅲ)——在计算中应注意的几个问题
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作者 冉勇 刘庆祥 +1 位作者 秦家银 代榕 《激光与红外》 CAS CSCD 北大核心 2004年第2期112-115,共4页
在光泵亚毫米波激光的理论模型及计算方法(Ⅰ)和(Ⅱ)的基础上,提出了在计算中应注意的几个问题。如考虑选用迭代法、谐振腔的反馈特性和谐振特性、多普勒展宽效应、压力展宽效应等。
关键词 光泵 亚毫米波激光器 迭代法 多普勒展宽效应 压力展宽效应
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Phase-Controlled Transparent Superluminal Light Propagation in a Doppler-Broadened Four-Level N-Type System 被引量:1
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作者 Lida Ebrahimi Zohravi Majid Abedi Mohammad Mahmoudi 《Communications in Theoretical Physics》 SCIE CAS CSCD 2014年第4期506-516,共11页
The propagation of a weak probe field in a four-level N-type quantum system in the presence of spontaneously generated coherence(SGC) is theoretically investigated. The optical properties of the system are studied and... The propagation of a weak probe field in a four-level N-type quantum system in the presence of spontaneously generated coherence(SGC) is theoretically investigated. The optical properties of the system are studied and it is shown that the group velocity of light pulse can be controlled by relative phase of applied fields. By changing the relative phase of applied fields, the group velocity of light pulse changes from transparent subluminal to the transparent superluminal light propagation. Thus, the phase-controlled absorption-free superluminal light propagation is obtained without applying an incoherent laser fields to the system. The propagation of a weak probe light pulse is studied by solving the Maxwell's wave equation on numerical grid in space and time. Moreover, we study the third order self- and cross-Kerr susceptibility of probe field and calculate the nonlinear cross-phase shift for different values of intensity of applied fields. In addition, we take into account the effect of Doppler broadening on the light pulse propagation and it is found that a suitable choice of laser propagation directions allows us to preserve our results even in the presence of Doppler effect. It is demonstrated that by increasing the Doppler width of distribution to the room temperature,the dispersion changes from transparent subluminal to transparent superluminal light propagation which is our major motivation for this work. 展开更多
关键词 coherent control spontaneously generated coherence SUPERLUMINAL
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