论文标题
可扩展的近红外石墨烯等离激元共振器,表现出强烈的非本地和电子量化效应
Scalable near-infrared graphene plasmonic resonators exhibiting strong non-local and electron quantization effects
论文作者
论文摘要
石墨烯等离激元谐振器在Terahertz和中红外范围内进行了广泛的研究,因为它们具有可调性和大限制因子,这些因子可以急剧增强轻度耦合。在这项工作中,我们证明了石墨烯等离子体的特征性缩放定律改变了较小(<40 nm)的等离子波长,将石墨烯等离激子谐振器的操作频率扩展到近红外(NIR)并修改其光学限制特性。我们利用一种新型的自下而上的块共聚物光刻方法,该方法在自上而下的方法上大大改善了在厘米尺度的区域内创建狭窄至12 nm的谐振器。这些结构的测量表明,它们的等离子共振受非本地和量子效应的强烈影响,这些效应将它们的谐振频率推入NIR(2.2 um),几乎是先前实验作品的频率的两倍。同时,这些共振因子的限制因子达到137 +/- 25,这是文献报道的光腔。虽然我们的发现表明,一些“禁止”过渡的增强比预期的较小的数量级,但这些结构的组合响应和大量限制使它们成为探索超紧张增强的自发发射的有吸引力的平台。
Graphene plasmonic resonators have been broadly studied in the terahertz and mid-infrared ranges because of their electrical tunability and large confinement factors which can enable dramatic enhancement of light-matter coupling. In this work, we demonstrate that the characteristic scaling laws of graphene plasmons change for smaller (< 40 nm) plasmonic wavelengths, expanding the operational frequencies of graphene plasmonic resonators into the near-infrared (NIR) and modifying their optical confinement properties. We utilize a novel bottom-up block copolymer lithography method that substantially improves upon top-down methods to create resonators as narrow as 12 nm over centimeter-scale areas. Measurements of these structures reveal that their plasmonic resonances are strongly influenced by non-local and quantum effects, which push their resonant frequency into the NIR (2.2 um), almost double the frequency of previous experimental works. The confinement factors of these resonators, meanwhile, reach 137 +/- 25, amongst the largest reported in literature for an optical cavity. While our findings indicate that the enhancement of some 'forbidden' transitions are an order of magnitude weaker than predicted, the combined NIR response and large confinement of these structures make them an attractive platform to explore ultra-strongly enhanced spontaneous emission.