论文标题

相位转移$ \ Mathcal {pt} $ - 对称周期性结构

Phase shifted $\mathcal{PT}$-symmetric periodic structures

论文作者

Raja, S. Vignesh, Govindarajan, A., Mahalingam, A., Lakshmanan, M.

论文摘要

我们报告了相移的奇偶校验和时间($ \ Mathcal {pt} $)的光谱特征 - 对称纤维bragg光栅(PPTFBG),并在不间断的$ \ Mathcal {pt} $ -Symmetric symmetric symmetric symmetric regime中演示了其作为demultiplexer的功能。所提出的系统的长度是毫米的顺序,并且可以通过改变结构中间相位移位的幅度来轻松地根据强度,带宽和波长来轻松调节对称状态的破损$ \ Mathcal {pt} $中的激光光谱。令人惊讶的是,通过明智选择的阶段和增益损失的价值来抑制多模式激光光谱。同样,可以在破碎的$ \ natercal {pt} $ - 对称制度中获得无侧的光谱,而无需使用Apodization配置文件,这是驯服不必要的旁白的传统方式。发现该系统显示出狭窄的带单模式激光行为,对于给定的增益和损失值的广泛相移值。此外,我们报告了通过增益和损失的变化,在不间断制度中的强度可调节反射和传播特性。在特殊点,系统显示单向波传输现象与光栅中间的相移的存在无关。对于正确的光入射方向,该系统在特殊点的挡块内表现出零反射波长。我们还研究了沿FBG长度沿固定位置放置的多个相移的作用,以及调整相移和增益损失值时光谱中的变化。在损坏的$ \ Mathcal {pt} $ - 对称制度中,多个相移的存在有助于控制反射率峰的数量,除了控制其幅度。

We report the spectral features of a phase-shifted parity and time ($\mathcal{PT}$)-symmetric fiber Bragg grating (PPTFBG) and demonstrate its functionality as a demultiplexer in the unbroken $\mathcal{PT}$-symmetric regime. The length of the proposed system is of the order of millimeters and the lasing spectra in the broken $\mathcal{PT}$-symmetric regime can be easily tuned in terms of intensity, bandwidth and wavelength by varying the magnitude of the phase shift in the middle of the structure. Surprisingly, the multi-modal lasing spectra are suppressed by virtue of judiciously selected phase and the gain-loss value. Also, it is possible to obtain sidelobe-less spectra in the broken $\mathcal{PT}$-symmetric regime, without a need for an apodization profile, which is a traditional way to tame the unwanted sidelobes. The system is found to show narrow band single-mode lasing behavior for a wide range of phase shift values for given values of gain and loss. Moreover, we report the intensity tunable reflection and transmission characteristics in the unbroken regime via variation in gain and loss. At the exceptional point, the system shows unidirectional wave transport phenomenon independent of the presence of phase shift in the middle of the grating. For the right light incidence direction, the system exhibits zero reflection wavelengths within the stopband at the exceptional point. We also investigate the role of multiple phase shifts placed at fixed locations along the length of the FBG and the variations in the spectra when the phase shift and gain-loss values are tuned. In the broken $\mathcal{PT}$-symmetric regime, the presence of multiple phase shifts aids in controlling the number of reflectivity peaks besides controlling their magnitude.

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