Center for Nanophotonics, FOM Institute for Atomic and Molecular Physics, Science Park 104, 1098 XG Amsterdam, The Netherlands.
Phys Rev Lett. 2012 Jun 1;108(22):223903. doi: 10.1103/PhysRevLett.108.223903. Epub 2012 May 30.
Recently it was discovered that periodic lattices of metamaterial scatterers show optical activity, even if the scatterers or lattice show no 2D or 3D chirality, if the illumination breaks symmetry. We demonstrate that such "pseudochirality" is intrinsic to any single planar metamaterial scatterer and in fact has a well-defined value at a universal bound. We argue that in any circuit model, a nonzero electric and magnetic polarizability derived from a single resonance automatically imply strong bi-anisotropy, i.e., magnetoelectric cross polarizability at the universal bound set by energy conservation. We confirm our claim by extracting polarizability tensors and cross sections for handed excitation from transmission measurements on near-infrared split ring arrays, and electrodynamic simulations for diverse metamaterial scatterers.
最近发现,即使散射体或晶格没有二维或三维手性,如果照明打破了对称性,周期性的超材料散射体晶格会表现出旋光性。我们证明了这种“赝手性”是任何单个平面超材料散射体固有的,实际上在通用边界处具有明确的值。我们认为,在任何电路模型中,由单个共振产生的非零电和磁极化率自动意味着强烈的双各向异性,即能量守恒所设定的通用边界处的磁电交叉极化率。我们通过从近红外分环阵列的透射测量中提取手性激发的极化率张量和截面,以及对各种超材料散射体的电磁动力学模拟,证实了我们的断言。