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周期调制四通道光学波导的宇称-时间对称特性调控和动力学研究
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作者 张光成 孙武 +2 位作者 周志鹏 全秀娥 叶伏秋 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第16期53-63,共11页
光学系统中周期调制主要是通过周期性变化的复折射率材料来实现,类似于周期驱动系统的量子隧穿行为,宇称-时间(PT)对称光学波导系统中光的传播可以通过周期调制来进行有效操控.本文设计了一种通过周期调制波导与增益型-耗散型波导交叉... 光学系统中周期调制主要是通过周期性变化的复折射率材料来实现,类似于周期驱动系统的量子隧穿行为,宇称-时间(PT)对称光学波导系统中光的传播可以通过周期调制来进行有效操控.本文设计了一种通过周期调制波导与增益型-耗散型波导交叉放置调控PT对称性的物理模型,在高频近似下讨论了周期调制对体系能谱的影响,最后结合解析和数值的方法揭示了光在非厄米四通道光学波导中的动力学演化.结果表明,与以往周期调制波导与增益型-耗散型波导平行放置的四通道光学波导体系相比,不仅可以通过周期调制调窄完全实能谱的存在范围,且可以更早地观测到实能谱.此外,调制参数变化时,四通道波导的相对光强和光学周期更为稳定.该理论研究给出了一种更为高效、稳定的调控PT对称的构型. 展开更多
关键词 宇称-时间对称 周期调制 四通道波导
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Four-Channel Label-Free Photonic Crystal Biosensor Using Nanocavity Resonators 被引量:2
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作者 Saeed OLYAEE Samira NAJAFGHOLINEZHAD Hamed ALIPOUR BANAEI 《Photonic Sensors》 SCIE EI CAS 2013年第3期231-236,共6页
In this paper, we design and characterize a novel small size four-channel biosensor based on the two-dimensional photonic crystal with introducing waveguides and nano-cavities in the hexagonal lattice of air pores in ... In this paper, we design and characterize a novel small size four-channel biosensor based on the two-dimensional photonic crystal with introducing waveguides and nano-cavities in the hexagonal lattice of air pores in the silicon slab. By removing a group of air pores, waveguides are achieved, and nano-cavities are shaped by modifying the radius of air pores. Highly parallel operation of this biosensor due to the special architecture is the capability of the designed structure. The biomaterials which are suspended in a liquid medium inside nano-cavities cause effective refractive index changes which lead to the resonant wavelength shift in the output terminal. According to results, with increasing the refractive index of nano-cavities, resonant wavelengths shifts to longer values. For biochemical sensing like DNA molecule and protein and for the refractive index detection, this novel designed biosensor can be utilized. 展开更多
关键词 Photonic crystal four-channel biosensor nano-cavity WAVEGUIDE
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