论文标题
方向性偶极骰子通过各向异性手性启用
Directional Dipole Dice Enabled by Anisotropic Chirality
论文作者
论文摘要
方向辐射和散射在光操作中起着至关重要的作用,用于在集成的纳米光子学,天线和元表面设计,量子光学等各种应用中。具有该属性的最元素系统是一类方向偶极子,包括圆形偶极,Huygens Dipole和Janus Dipole。以前未报告的所有三种偶极类型的统一实现以及它们可以自由切换的机制,但对于开发紧凑和多功能方向源而言是非常可取的。在这里,我们从理论上和实验上证明了手性和各向异性的协同作用可以在线性极化平面波激发下以相同频率的一个结构中的所有三个定向偶极子产生。该机制使一个简单的螺旋粒子可以用作方向性偶极骰子(DDD),通过粒子的不同“面”选择性操纵光学方向性。我们采用DDD的三个“面”来实现在三个正交方向的指导波的脸部反复路由,分别由自旋,功率流和反应力确定的方向性。完整方向性空间的这种构建可以实现对近场和远场方向的前所未有的高维控制,并在光子集成电路,量子信息处理和亚波长度分辨率成像中进行了广泛的应用。
Directional radiation and scattering play an essential role in light manipulation for various applications in integrated nanophotonics, antenna and metasurface designs, quantum optics, etc. The most elemental system with this property is the class of directional dipoles, including the circular dipole, Huygens dipole, and Janus dipole. A unified realization of all three dipole types and a mechanism to freely switch among them are previously unreported, yet highly desirable for developing compact and multifunctional directional sources. Here, we theoretically and experimentally demonstrate that the synergy of chirality and anisotropy can give rise to all three directional dipoles in one structure at the same frequency under linearly polarized plane wave excitations. This mechanism enables a simple helix particle to serve as a directional dipole dice (DDD), achieving selective manipulation of optical directionality via different "faces" of the particle. We employ three "faces" of the DDD to realize face-multiplexed routing of guided waves in three orthogonal directions with the directionality determined by spin, power flow, and reactive power, respectively. This construction of the complete directionality space can enable the unprecedented high-dimensional control of both near-field and far-field directionality with broad applications in photonic integrated circuits, quantum information processing, and subwavelength-resolution imaging.