National Institute for Materials Science (NIMS) , 1-1 Namiki, Tsukuba 305-0044, Japan.
Nano Lett. 2015 Mar 11;15(3):1904-10. doi: 10.1021/nl504755d. Epub 2015 Feb 19.
We constructed plasmo-photonic crystals in which efficient light-trapping, plasmonic resonances couple with photonic guided resonances of large density of states and high-quality factor. We have numerically and experimentally shown that heteroplasmon hybrid modes emerge in stacked complementary (SC) plasmo-photonic crystals. The resonant electromagnetic-field distributions evidence that the two hybrid modes originate from two different heteroplasmons, exhibiting a large energy splitting of 300 meV. We further revealed a series of plasmo-photonic modes in the SC crystals.
我们构建了等离子体光子晶体,其中有效的光捕获、等离子体共振与大态密度和高品质因子的光子导共振耦合。我们已经通过数值和实验证明,在堆叠互补(SC)等离子体光子晶体中出现了杂化等离子体混合模式。共振电磁场分布证明了这两种混合模式来源于两种不同的杂化等离子体,表现出 300meV 的大能量分裂。我们进一步在 SC 晶体中揭示了一系列等离子体光子模式。