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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Design and analysis of all-dielectric subwavelength focusing flat lens
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Design and analysis of all-dielectric subwavelength focusing flat lens

机译:全电介质亚波长聚焦透镜的设计与分析

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In this letter, we numerically designed and experimentally demonstrated a compact photonic structure for the subwavelength focusing of light using all-dielectric absorption-free and nonmagnetic scattering objects distributed in an air medium. In order to design the subwavelength focusing flat lens, an evolutionary algorithm is combined with the finite-difference time-domain method for determining the locations of cylindrical scatterers. During the multi-objective optimization process, a specific objective function is defined to reduce the full width at half maximum (FWHM) and diminish side lobe level (SLL) values of light at the focal point. The time-domain response of the optimized flat lens exhibits subwavelength light focusing with an FWHM value of 0.19 lambda and an SLL value of 0.23, where. denotes the operating wavelength of light. Experimental analysis of the proposed flat lens is conducted in a microwave regime and findings exactly verify the numerical results with an FWHM of 0.192 lambda and an SLL value of 0.311 at the operating frequency of 5.42 GHz. Moreover, the designed flat lens provides a broadband subwavelength focusing effect with a 9% bandwidth covering frequency range of 5.10 GHz-5.58 GHz, where corresponding FWHM values remain under 0.21 lambda. Also, it is important to note that the designed flat lens structure performs a line focusing effect. Possible applications of the designed structure in telecom wavelengths are speculated upon for future perspectives. Namely, the designed structure can perform well in photonic integrated circuits for different fields of applications such as high efficiency light coupling, imaging and optical microscopy, with its compact size and ability for strong focusing.
机译:在这封信中,我们用在空气介质中分布的全介电吸收和非磁性散射物体,设计和实验地表明了用于光的亚波长聚焦的紧凑光子结构。为了设计亚波长聚焦扁平透镜,将进化算法与用于确定圆柱形散射体的位置的有限差分时间域方法。在多目标优化过程中,定义了特定的目标函数,以减小半个最大(FWHM)的全宽度,并在焦点处减小光的侧凸电平(SLL)值。优化的扁平透镜的时域响应表现出具有0.19λ的FWHM值的亚波长光,并且SLL值为0.23。表示光的工作波长。所提出的扁平透镜的实验分析在微波制度中进行,并确切地验证了0.192λ的FWHM的数值结果,并在5.42GHz的工作频率下为0.311的SLL值。此外,设计的扁平透镜提供了宽带子波长聚焦效果,具有9%的带宽覆盖频率范围为5.10GHz-5.58GHz,其中相应的FWHM值仍然在0.21λ下降下。而且,重要的是要注意,设计的扁平透镜结构执行线路聚焦效果。为未来的观点推测设计结构在电信波长中的可能应用。即,设计的结构可以在光子集成电路中表现良好,用于不同的应用领域,例如高效率光耦合,成像和光学显微镜,其紧凑的尺寸和强度聚焦能力。

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