论文标题
使用低损伤粉核化合物相变的可见光谱中可调波前控制
Tunable wavefront control in the visible spectrum using low-loss chalcogenide phase change metasurfaces
论文作者
论文摘要
全dielectric Metasurfaces提供了独特的解决方案,用于对光的高级波前操纵,并完全控制幅度和次波长尺度的相位。然而,对于大多数设备而言,一个局限性是缺乏对其响应后制作后的可调性。为了打破这个极限,一种有希望的方法是采用相变材料(PCM),该方法提供了快速,低的能量和非挥发性的手段,用于赋予具有开关机制的元地口。在这方面,使用不同的葡萄染色剂在中红外和近红外光谱中取得了巨大进步。然而,在可见光谱范围内,很少有设备显示出全相操作,高效率和可逆切换。在这里,我们在实验上证明了由硫化剂(SB2S3)PCM制成的可调节全丝huygens跨表面,在可见光谱范围内的低损耗和高索引材料,其非典型和结晶状态之间具有较大的对比度(接近0.5)。我们显示接近2PI相位调制,具有高关联的透射率,并使用它来创建可切换梁转向和全息显示器。这些新型的粉红色PCM Metasurfaces有可能成为下一代空间光调节器的平台,并影响应用领域,例如可调和适应性平坦光学器件,LIDAR等。
All-dielectric metasurfaces provide unique solutions for advanced wavefront manipulation of light with complete control of amplitude and phase at sub-wavelength scales. One limitation, however, for most of these devices is the lack of any post-fabrication tunability of their response. To break this limit, a promising approach is employing phase-change-materials (PCM), which provide a fast, low energy and non-volatile means to endow metasurfaces with a switching mechanism. In this regard, great advancements have been done in the mid infrared and near infrared spectrum using different chalcogenides. In the visible spectral range, however, very few devices have demonstrated full phase manipulation, high efficiencies, and reversible switching. Here, we experimentally demonstrate a tunable all-dielectric Huygens metasurface made of antimony sulfide (Sb2S3) PCM, a low loss and high-index material in the visible spectral range with a large contrast (nearly 0.5) between its amorphous and crystalline states. We show close to 2pi phase modulation with high associated transmittance and use it to create switchable beam steering and holographic display devices. These novel chalcogenide PCM metasurfaces have the potential to emerge as a platform for next generation spatial light modulators and to impact application areas such as tunable and adaptive flat optics, LiDAR, and many more.