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Theory for surface polaritons supported by a black-phosphorus monolayer

机译:黑磷单分子层支持的表面极化子理论

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A theory is presented for surface polaritons that may propagate along the electrostatically doped phosphorene layer (black-phosphorus monolayer) surrounded by two insulating media of different dielectric constants. It is shown that the phosphorene layer in such a structure supports three types of strongly localized surface polariton modes: the transverse magnetic (TM), the transverse electric (TE), and the hybrid TE-TM. Both the TM and TE modes can propagate only along the phosphorene's "armchair" and "zigzag" crystallographic axes, while the in-plane wave vector q of the hybrid TE-TM modes makes a finite angle with respect to both the abovementioned axes. It is found that there exists such a critical value q(C) of the polariton mode wave number q, peculiar to each type of mode, that the mode ceases from propagating at q > q(C). The critical value of polariton frequency, corresponding to this critical wave number, lies either below the phosphorene's interband absorption threshold or slightly above it, depending on the type of the polariton mode, its propagation direction, and the doping level of the phosphorene. Our findings suggest that the phosphorene, in which the charge carrier density is tuned by an external gate voltage, could be promising for polariton waveguiding applications in future planar nanophotonic devices operating at near-infrared wavelengths.
机译:提出了一种关于表面极化子的理论,该极化子可以沿着被两种介电常数不同的绝缘介质包围的静电掺杂的磷层(黑磷单层)传播。结果表明,这种结构的磷光层支持三种类型的强局部表面极化模式:横向磁(TM),横向电(TE)和混合TE-TM。 TM和TE模式都只能沿磷光体的“扶手椅”和“之字形”晶体学轴传播,而混合TE-TM模式的面内波矢量q相对于上述两个轴都形成有限角度。发现存在每种类型的模式特有的极化子模式波数q的临界值q(C),使得该模式在q> q(C)处停止传播。取决于该临界波数的极化子频率的临界值位于磷光体的带间吸收阈值以下或略高于磷光体的带间吸收阈值,这取决于极化子模式的类型,其传播方向和磷光体的掺杂水平。我们的发现表明,通过外部栅极电压调节载流子密度的磷光体有望在未来以近红外波长工作的平面纳米光子器件中用于极化子波导应用。

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