Center for Nanophotonics, FOM Institute for Atomic and Molecular Physics (AMOLF), Science Park 104, 1098 XG Amsterdam, The Netherlands.
Phys Rev Lett. 2010 Sep 17;105(12):123901. doi: 10.1103/PhysRevLett.105.123901.
We study the magnetic coupling between a metal-coated near-field probe and a photonic crystal nanocavity. The resonance of the nanocavity shifts to shorter wavelengths when the ringlike apex of the probe is above an antinode of the magnetic field of the cavity. We show that this can be attributed to a magnetic light-matter interaction and is in fact a manifestation of Lenz's law at optical frequencies. We use these measurements to determine the magnetic polarizability of the apex of the probe and find good agreement with theory. We discuss how this method could be applied to study the electric and magnetic polarizibilities of nano-objects.
我们研究了金属涂层近场探针和光子晶体纳米腔之间的磁耦合。当探针的环状顶端位于腔磁场的节点上方时,纳米腔的共振会移向较短的波长。我们表明,这可以归因于磁光相互作用,实际上是光学频率下楞次定律的一种表现。我们使用这些测量结果来确定探针顶端的磁极化率,并发现与理论值吻合良好。我们讨论了这种方法如何应用于研究纳米物体的电和磁极化率。