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Anisotropic Flow Control and Gate Modulation of Hybrid Phonon-Polaritons

机译:杂交声子 - 极性子的各向异性流量控制和栅极调制

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Light-matter interaction in two-dimensional photonic or phononic materials allows for the confinement and manipulation of free-space radiation at sub-wavelength scales. Most notably, the van der Waals heterostructure composed of graphene (G) and hexagonal boron nitride (hBN) provides for gate-tunable hybrid hyperbolic plasmon phonon-polaritons (HP3). Here, we present the anisotropic flow control and gate-voltage modulation of HP3 modes in G-hBN on an air-Au microstructured substrate. Using broadband infrared synchrotron radiation coupled to a scattering-type near-field optical microscope, we launch HP3 waves in both hBN Reststrahlen bands and observe directional propagation across in-plane heterointerfaces created at the air-Au junction. The HP3 hybridization is modulated by varying the gate voltage between graphene and Au. This modifies the coupling of continuum graphene plasmons with the discrete hBN hyperbolic phonon polaritons, which is described by an extended Fano model. This work represents the first demonstration of the control of polariton propagation, introducing a theoretical approach to describe the breaking of the reflection and transmission symmetry for HP3 modes. Our findings augment the degree of control of polaritons in G-hBN and related hyperbolic metamaterial nanostructures, bringing new opportunities for on-chip nano-optics communication and computing.
机译:二维光子或声子材料中的浅型相互作用允许在子波长尺度处的自由空间辐射的限制和操纵。最值得注意的是,由石墨烯(G)和六边形氮化硼(HBN)组成的范德华异质结构为栅极可调杂交双曲旋转等离子体校验 - 极性(HP3)提供。这里,我们在空气 - au微结构基板上介绍了G-HBN中HP3模式的各向异性流量控制和栅极 - 电压调制。使用耦合到散射型近场光学显微镜的宽带红外同步同步辐射,我们在HBN Reststrahlen带中发射HP3波,并观察到在Air-Au结之间产生的平面内异偶涂层的方向传播。通过改变石墨烯和Au之间的栅极电压来调制HP3杂交。这改变了连续的HBN双曲声子偏振片的连续um石墨烯等离子体的耦合,其由扩展的Fano模型描述。这项工作代表了对Polariton传播的控制的第一次演示,引入了描述HP3模式的反射和传输对称性的断裂的理论方法。我们的研究结果增加了G-HBN和相关双曲超材料纳米结构中极化子的控制程度,为片上纳米光学通信和计算带来了新的机会。

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