论文标题
拐点:光子纳米夹的新观点
Inflection Point: A New Perspective on Photonic Nanojets
论文作者
论文摘要
当光通过微粒传入界面的边缘或中部传播时,有一个基本规则,即在输出端口迅速或缓慢地收敛和分歧。这两个部分分别称为快速变化(RRC)和缓慢变化区域(RSC)的区域。找到RRC和RSC之间的边界点是从科学上揭示和阐明此规则的关键。基于光收敛差与出现光的斜率之间的相关性,结合了自然对数与物理现实中的生长之间的关系,以及在实际意义上的功能的第二个导数,我们确定RRC和RSC之间的边界点,即拐点。从这种角度来看,光照射对RSC和RRC的光辐射以及拐点的位置以及在不同的折射率对比度下的位置以及近距离的位置,并通过有限的基于基于方法的数字模拟和基于射线仪的基于基于射线的基于基于射线的基于理论分析研究了拐点的位置。通过照亮不同场强度比除以拐点的光的光,我们以新的方式证明了光子钩(pH)的产生和PNJ/pH的调节。
When light propagates through the edge or middle part of microparticle's incoming interface, there is a basic rule that light converges and diverges rapidly or slowly at the output port. These two parts are referred to as region of rapid change (RRC) and region of slow change (RSC), respectively. Finding the boundary point between RRC and RSC is the key to reveal and expound this rule scientifically. Based on the correlation between light convergence-divergence and the slope of emergent light, combined with the relationship between natural logarithm and growth in physical reality and the second derivative of a function in practical significance, we determine the boundary point between RRC and RSC, namely the inflection point. From such perspective, photonic nanojet (PNJ) and near-field focusing by light irradiation on RSC and RRC, as well as the position of the inflection point under different refractive index contrast and the field distribution of light-focusing, are studied with finite-element-method-based numerical simulation and ray-optics-based theoretical analysis. By illuminating light of different field intensity ratios to the regions divided by the inflection point, we demonstrate the generation of photonic hook (PH) and the modulation of PNJ/PH in a new manner.