标题: | 自感应透明现象在非线性共振光能隙结构里之研究 Study of Self-Induced Transparency in a Nonlinear Resonant Photonic Band Gap Structure |
作者: | 曾弘毅 Hong-Yih Tseng Sien Chi 祁甡 光电工程学系 |
关键字: | 自感应透明;布拉格光固子;光能隙;Self-induced transparency;Bragg soliton;Photonic band gap |
公开日期: | 2002 |
摘要: | 这篇论文针对自感应透明现象在均匀掺有二阶共振原子的非线性光能隙结构里作了理论性的研究。研究发现描述光脉冲在这种共振光能隙结构的Maxwell-Bloch 方程组可以化简为等效的非线性耦合方程组。我们首先找到了这组非线性方程组的一个完整解析解,这个解描述了一串无损耗的光脉冲序列,解的波包项是由一带有背景光常数的正弦函数所形成,而相位项则是会随时间变化的调变项。依据Bragg 光固子理论,这组非线性方程组还可以进一步地化简为非线性Schrödinger 方程式。这样的模型描述了一个等价的物理机制:由掺杂的共振原子提供了光能隙结构额外的等效群速色散与等效的三阶非线性项,因此Bragg 光固子可以因为整个介质群速色散与非线性项的平衡而无失真地在此光能隙结构传播。由于整个模型已经将共振原子的效应考虑进介质里,原始禁制能带会被掺杂原子与光脉冲高光强度的非线性响应给平移。这导致即使一个自感应透明光固子的中心频率落在原始的禁制能带内,此光固子依然能穿透此光能隙结构,只要它满足等效的Bragg光固子传播机制。 研究发现这个现象的近似解并以实际的数值例子验证之。最后,我们也发现了 Bragg 光固子可以存在于掺有均质共振原子且具有非同调帮浦光的光能隙结构里。我们的研究将原本在一般共振介质里的自感应透明理论扩展到均匀掺有二阶共振原子的光能隙结构里。 In this dissertation, we theoretically study the self-induced transparency (SIT) in a nonlinear photonic bandgap structure uniformly doped with resonant two-level atoms. We have found that the Maxwell-Bloch equations describing pulse propagation in such a uniformly doped photonic band gap structure can be reduced to effective nonlinear coupled-mode equations. An exact analytic pulse-train solution to these effective coupled-mode equations is obtained first. Such a distortionless pulse-train solution is given by sinusoidal functions with a DC background and a modulated phase. According to the theory of Bragg soliton, the effective nonlinear coupled-mode equations can be further reduced to an effective nonlinear Schrödinger equation. This model describes an equivalent physical mechanism for Bragg soliton propagation resulting from the effective quadratic dispersion balancing with the effective third-order nonlinearity. Because the resonant atoms are taken into account, the original bandgap can be shifted both by the dopants and the instantaneous nonlinearity response originating from an intense optical pulse. As a result, even if an SIT soliton with its central frequency deep inside the original forbidden band, it still can propagate through the resonant PBG medium as long as this SIT soliton satisfies the effective Bragg soliton propagation. An approximate soliton solution describing such coexistence has been found. Numerical examples of the SIT pulse train and SIT soliton in a one-dimensional As2S3-based PBG structure doped uniformly with Lorentzian line-shape resonant atoms are shown. Finally, we show that the Bragg soliton also can coexist with a stead-state pulse in an amplifying nonlinear photonic bandgap structure uniformly doped with homogeneously broadening two-level atoms. Our studies extend the SIT theory for the solitary waves propagating in a nonlinear resonant photonic bandgap structure. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT910614005 http://hdl.handle.net/11536/71086 |
显示于类别: | Thesis |