论文标题
绝热模式转换宽度阶层的纳米刺激:启用多波长光定位
Adiabatic Mode Transformation in Width-graded Nano-gratings: Enabling Multiwavelength Light Localization
论文作者
论文摘要
我们描述了亚波长期光栅中的四个主要表面等离子体偏振子耦合和相互作用机制,并证明了它们在塑造等离子光栅的光学响应中的重要作用。在宽度阶层的金属 - 金属 - 金属纳米刺激的框架内,模式限制和波浪引导会导致多波长光定位,提供绝热模式转换的条件。通过对凹槽宽度(W),凹槽 - 深度(L)和凹槽到沟分离(D)的微调(D),进一步增强了该领域。通过将宽度分级和非级别的光栅的共振模式并列并定义绝热条件,我们证明了W和D在实现凹槽之间绝热模式转换中的关键性。我们观察到,当凹槽与绝热耦合时,分级光栅的谐振波长对应于单个凹槽的性质。我们表明L在定义局部波长的跨度方面起着重要功能。我们表明,对于L <30nm和300nm <d <900nm,对于L范围的L。L <30nm和300nm <d <900nm的多波长谐振模式可实现3个数量级。光谱传播到多光谱成像。
We delineate the four principal surface plasmon polariton coupling and interaction mechanisms in subwavelength gratings, and demonstrate their significant roles in shaping the optical response of plasmonic gratings. Within the framework of width-graded metal-insulator-metal nano-gratings, mode confinement and wave guiding result in multiwavelength light localization provided conditions of adiabatic mode transformation are satisfied. The field is enhanced further through fine tuning of the groove-width (w), groove-depth (L) and groove-to-groove-separation (d). By juxtaposing the resonance modes of width-graded and non-graded gratings and defining the adiabaticity condition, we demonstrate the criticality of w and d in achieving adiabatic mode transformation among the grooves. We observe that the resonant wavelength of a graded grating corresponds to the properties of a single groove when the grooves are adiabatically coupled. We show that L plays an important function in defining the span of localized wavelengths. We show that multiwavelength resonant modes with intensity enhancement exceeding 3 orders of magnitude are possible with w < 30nm and 300nm < d < 900nm for a range of fixed values of L. This study presents a novel paradigm of deep-subwavelength adiabatically-coupled width-graded gratings - illustrating its versatility in design, hence its viability for applications ranging from surface enhanced Raman spectroscopy to multispectral imaging.