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Selective excitation and imaging of ultraslow phonon polaritons in thin hexagonal boron nitride crystals

机译:六方氮化硼薄晶体中超慢声子极化子的选择性激发和成像

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摘要

We selectively excite and study two new types of phonon-polariton guided modes that are found in hexagonal boron nitride thin flakes on a gold substrate. Such modes show substantially improved confinement and a group velocity that is hundreds of times slower than the speed of light, thereby providing a new way to create slow light in the mid-infrared range with a simple structure that does not require nano-patterning. One mode is the fundamental mode in the first Restrahlen band of hexagonal boron nitride thin crystals on a gold substrate; the other mode is equivalent to the second mode of the second Restrahlen band of hexagonal boron nitride flakes that are suspended in vacuum.The new modes also couple efficiently with incident light at the hexagonal boron nitride edges, as we demonstrate experimentally using photo-induced force microscopy and scanning near-field optical microscopy. The high confinement of these modes allows for Purcell factors that are on the order of tens of thousands directly above boron nitride and a wide band, with new perspectives for enhanced light-matter interaction. Our findings demonstrate a new approach to engineering the dispersion of polaritons in 2D materials to improve confinement and light-matter interaction, thereby paving the way for new applications in mid-infrared nano-optics.
机译:我们有选择地激发和研究两种在金基底上的六方氮化硼薄片中发现的新型声子-极化子引导模式。这样的模式显示出显着改善的限制,其群速度比光速慢数百倍,从而提供了一种新的方式来以不需要纳米图案的简单结构在中红外范围内产生慢速光。一种模式是金基底上六方氮化硼薄晶体的第一Restrahlen带中的基本模式。另一个模式等效于悬浮在真空中的六方氮化硼薄片的第二Restrahlen带的第二模式。新模式还与六方氮化硼边缘的入射光有效耦合,如我们使用光诱导力进行的实验证明显微镜和扫描近场光学显微镜。这些模式的高度限制允许直接在氮化硼上方和宽频带上具有成千上万个数量级的赛尔因子,并具有增强光-物质相互作用的新观点。我们的发现证明了一种工程化极化子在2D材料中的分散性的新方法,以改善约束和光物质相互作用,从而为中红外纳米光学的新应用铺平了道路。

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