论文标题
一般的无损极化和相变的相变
General lossless polarization and phase transformation using bilayer metasurfaces
论文作者
论文摘要
元表光学元件可以通过下波长分辨率来控制波前控制和极化操纵。由线性双折射元原子(如矩形纳米柱)制成的元浮面通常用于控制阶段和极化,但是这些元原子的单层无法用椭圆极化或循环极化的特征态(即,chiral Transformations)实现转换。在这里,显示出两个层叠的跨表面层,包括线性双向元原子,提供了足够多的自由度来实现任意的统一相和极化变换。描述并使用一种用于此类元结构的系统设计方法,用于设计双焦点金属群,该金属群无法由单层双重元素元原子实现。提出的设计和实现技术引入了一种系统的方法,用于实现最一般的无损极化和相位转换的形式,并使用具有高效率的跨曲面板。
Metasurface optical elements enable wavefront control and polarization manipulation with subwavelength resolution. Metasurfaces made of linearly birefringent meta-atoms such as rectangular nano-posts are commonly used to control phase and polarization, but a single layer of these meta-atoms cannot implement transformations with elliptically polarized or circularly polarized eigenstates (i.e., chiral transformations). Here, it is shown that two cascaded metasurface layers comprising linearly birefringent meta-atoms provide sufficiently many degrees of freedom to implement arbitrary unitary phase and polarization transformations. A systematic design method for such metastructures is described and used to design a bifocal metalens that cannot be implemented by a single layer of birefringent meta-atoms. The presented design and implementation techniques introduce a systematic approach for realizing the most general form of lossless polarization and phase transformations using metasurfaces with high efficiency.