论文标题
在完整可见光谱上进行任意波前的透射式甲图
Transmissive Metagrating for Arbitrary Wavefront Shaping Over the Full Visible Spectrum
论文作者
论文摘要
已显示Metagrats构成了极端波前操纵的敏捷和高效平台,这超出了梯度跨度的局限性。先前的透射式元方法已经在复合不对称的包含物上求助,以实现单渠道接近完美的衍射。但是,这种复杂的夹杂物对几何参数很敏感,并且缺乏任意相位调制的灵活性,从而将应用程序限制在光束偏转中。在这里,我们通过矩形夹杂物来调整其多极干扰,在全登录传播元中显示出完美的单一衍射。使用该原理,我们通过实验性地证明了通过CMOS兼容的硝酸硅纳米骨体的位移调节,对全息图进行了模拟相位曲线编码,表现出宽带和广泛的高角度衍射效率,以供极化和整个可见范围。我们的演示具有极高的角度/波长/极化公差和减轻设计和制造的结构复杂性,我们的演示释放了用于各种实际应用的基于倾斜的波前操纵的全部潜力。
Metagratings have been shown to form an agile and efficient platform for extreme wavefront manipulation, going beyond the limitations of gradient metasurfaces. Previous approaches for transmissive metagratings have resorted on compound asymmetric inclusions to achieve single-channel near-perfect diffraction. However, such complex inclusions are sensitive to geometric parameters and lack the flexibility for arbitrary phase modulation, restricting applications to beam deflection. Here, we show perfect unitary diffraction in all-dielectric transmissive metagratings using rectangular inclusions by tailoring their multipole interferences. Using this principle, we experimentally demonstrate analog phase profile encoding of a hologram through displacement modulation of CMOS-compatible silicon nitride nanobars, manifesting broadband and wide-angle high diffraction efficiencies for both polarizations and across the entire visible range. Featured with extreme angle/wavelength/polarization tolerance and alleviated structural complexity for both design and fabrication, our demonstration unlocks the full potential of metagrating-based wavefront manipulation for a variety of practical applications.