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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Dispersion of photonic Bloch modes in periodically twisted birefringent media
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Dispersion of photonic Bloch modes in periodically twisted birefringent media

机译:光子Bloch模式在周期性扭曲的双折射介质中的色散

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We investigate the polarization evolution and dispersive properties of the eigenmodes of birefringent media with arbitrarily twisted axes of birefringence. Analytical and numerical methods based on a transfer matrix approach are developed and used to study specifically helically twisted structures and the Bloch modes of periodically twisted media, as represented in particular by structural "rocking" filters inscribed in highly birefringent photonic crystal fibers. The presence of periodically twisted birefringence axes causes the group velocity dispersion curves to separate strongly from each other in the vicinity of the anti-crossing wavelength, where the inter-polarization beat-length equals an integer multiple of the rocking period. The maximum separation between these curves and the bandwidth of the splitting depend on the amplitude of the rocking angle. We also show that suitably designed adiabatic transitions, formed by chirping the rocking period, allow a broadband conversion between a linearly polarized fiber eigenmode and a single Bloch mode of a uniform rocking filter. The widely controllable dispersive properties provided by rocking filters may be useful for manipulating the phase-matching conditions in nonlinear optical processes such as four-wave mixing, supercontinuum generation, and the generation of resonant radiation from solitons.
机译:我们研究了双折射轴任意扭曲的双折射介质本征模的偏振演化和色散特性。开发了基于转移矩阵方法的分析和数值方法,并将其用于研究螺旋扭曲结构和周期性扭曲介质的布洛赫模式,特别是由高度双折射光子晶体光纤中刻画的结构“摇摆”滤光片所代表。周期性扭曲的双折射轴的存在会导致群速度色散曲线在反交叉波长附近彼此强烈分离,其中偏振间拍频长度等于摇摆周期的整数倍。这些曲线之间的最大间隔和分离的带宽取决于摇摆角度的幅度。我们还表明,通过chi的摇摆周期形成适当设计的绝热过渡,可以在线性偏振光纤本征模和均匀摇摆滤波器的单Bloch模式之间进行宽带转换。摇摆滤波器提供的广泛可控制的色散特性可用于操纵非线性光学过程中的相位匹配条件,例如四波混合,超连续谱的产生以及孤子共振辐射的产生。

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