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Large optical nonlinearity of nanoantennas coupled to an epsilon-near-zero material

机译:纳米环的大型光学非线性耦合到epsilon - 邻零材料

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The size and operating energy of a nonlinear optical device are fundamentally constrained by the weakness of the nonlinear optical response of common materials(1). Here, we report that a 50-nm-thick optical metasurface made of optical dipole antennas coupled to an epsilon-near-zero material exhibits a broadband (similar to 400 nm bandwidth) and ultrafast (recovery time less than 1 ps) intensity-dependent refractive index n(2) as large as -3.73 +/- 0.56 cm(2) GW(-1). Furthermore, the metasurface exhibits a maximum optically induced refractive index change of +/- 2.5 over a spectral range of similar to 200 nm. The inclusion of low-Q nanoantennas on an epsilon-nearzero thin film not only allows the design of a metasurface with an unprecedentedly large nonlinear optical response, but also offers the flexibility to tailor the sign of the response. Our technique removes a longstanding obstacle in nonlinear optics: the lack of materials with an ultrafast nonlinear contribution to refractive index on the order of unity. It consequently offers the possibility to design low-power nonlinear nano-optical devices with orders-of-magnitude smaller footprints.
机译:非线性光学装置的尺寸和操作能量基本上受到普通材料(1)的非线性光学响应的​​弱点的限制。在这里,我们报告说,由耦合到epsilon - 邻零材料的光学偶极天线制成的50nm厚的光学元曲面表现出宽带(类似于400nm的带宽)和超快(恢复时间小于1 ps)的强度依赖折射率N(2)大至-3.73 +/- 0.56厘米(2)GW(-1)。此外,元表面在类似于200nm的光谱范围内表现出最大光学诱导的折射率变化+/- 2.5。在epsilon-eastzero薄膜上包含低Q纳米纳米,不仅允许使用前所未有的大型非线性光学响应,但还提供了定制响应符号的灵活性。我们的技术在非线性光学中消除了长期的障碍:缺乏超快非线性对折射率的折射率的折衷。因此,它提供了设计低功耗非线性纳米光学器件,其具有较小的占地面积。

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