Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Nature. 2013 Jul 11;499(7457):188-91. doi: 10.1038/nature12289.
The ability to confine light is important both scientifically and technologically. Many light confinement methods exist, but they all achieve confinement with materials or systems that forbid outgoing waves. These systems can be implemented by metallic mirrors, by photonic band-gap materials, by highly disordered media (Anderson localization) and, for a subset of outgoing waves, by translational symmetry (total internal reflection) or by rotational or reflection symmetry. Exceptions to these examples exist only in theoretical proposals. Here we predict and show experimentally that light can be perfectly confined in a patterned dielectric slab, even though outgoing waves are allowed in the surrounding medium. Technically, this is an observation of an 'embedded eigenvalue'--namely, a bound state in a continuum of radiation modes--that is not due to symmetry incompatibility. Such a bound state can exist stably in a general class of geometries in which all of its radiation amplitudes vanish simultaneously as a result of destructive interference. This method to trap electromagnetic waves is also applicable to electronic and mechanical waves.
光的限制能力在科学和技术上都很重要。有许多限制光的方法,但它们都通过禁止出射波的材料或系统来实现限制。这些系统可以通过金属镜、光子带隙材料、高度无序介质(安德森局域化)来实现,对于出射波的一部分子集,可以通过平移对称性(全内反射)或旋转或反射对称性来实现。这些例子的例外情况仅存在于理论建议中。在这里,我们预测并实验证明,即使在周围介质中允许出射波,光也可以在图案化介电板中被完美限制。从技术上讲,这是对“嵌入本征值”的观察结果,即辐射模式连续体中的束缚态,这不是由于对称性不兼容引起的。这种束缚态可以在一类通用的几何形状中稳定存在,其中所有的辐射幅度同时由于相消干涉而消失。这种捕获电磁波的方法也适用于电子和机械波。