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Manipulating phonon polaritons in low loss B-11 enriched hexagonal boron nitride with polarization control

机译:操作在低损耗B-11声子极化声子丰富六角氮化硼偏振控制

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Hexagonal boron nitride (hBN) supports two types of hyperbolic phonon polaritons (HPPs), whose properties of strong electromagnetic field confinement and low propagation loss have been proposed for various applications in nanophotonics. Conventionally, real-space imaging of HPPs by scattering-type scanning near-field optical microscopy (s-SNOM) with vertical polarization excitation contains both tip and edge launched polariton modes, which leads to hybrid interference fringes. In this work, we symmetrically study the tip and edge excited HPPs in both boron nitride with the natural distribution of boron isotopes (natural hBN) and B-11 isotope-enriched boron nitride (99.2% B-11 hBN). The intrinsic HPPs excited in 99.2% B-11 hBN exhibit a lower damping rate and longer propagation length than that in natural hBN. We experimentally realize a tuning from tip-dominated to edge-dominated excited HPPs by rotating the polarization of incident light. The near-field electric field intensity (NEFI) of edge-excited HPPs E-edge and the angle beta (between the hBN edge and the projective direction of the incident electric field on the hBN plane) present a sine function relationship as E-edge proportional to |sin beta| under an s-polarized incident light. The NEFI of edge-excited HPPs in 99.2% B-11 hBN shows a 10% enhancement compared to natural hBN under the same measurement conditions. Our findings demonstrate an effective approach to reducing phonon polariton damping and manipulating phonon polariton excitation in hBN, which are beneficial for developing HPPs-based nanophotonic applications.
机译:六角氮化硼(hBN)支持两种类型双曲声子极化声子(hpp)的强电磁场的性质监禁和低传输损耗提出了各种各样的应用程序纳米光子学。高压泵的scattering-type扫描近场光学显微镜(s-SNOM)和垂直的偏振激发包含小费和边发射极化声子模式,导致混合干涉条纹。对称研究尖端和边缘兴奋的进行在氮化硼与自然(自然hBN)和硼同位素的分布B-11 isotope-enriched氮化硼(99.2% B-11hBN)。hBN表现出较低的阻尼率和更长的时间传播比在自然hBN长度。从实验上实现优化tip-dominated edge-dominated兴奋的进行入射光的偏振旋转。近场电场强度(值得)edge-excited hpp E-edge角β(hBN边缘和射影之间上的入射电场方向hBN平面)提出一个正弦函数的关系作为E-edge成正比|罪β|下一个s-polarized入射光。edge-excited hpp 99.2% B-11 hBN显示10%增强下自然hBN相比相同的测量条件。演示一个有效的方法来减少声子极化声子阻尼和操纵声子在hBN极化声子激发,这是有益的为开发HPPs-based纳米光子应用程序。

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