Schuller Jon A, Brongersma Mark L
Geballe Lab for Advanced Materials, 476 Lomita Mall, Stanford University, Stanford, CA 94306, USA.
Opt Express. 2009 Dec 21;17(26):24084-95. doi: 10.1364/OE.17.024084.
Using Mie theory we derive a number of general results concerning the resonances of spherical and cylindrical dielectric antennas. Specifically, we prove that the peak scattering cross-section of radiation-limited antennas depends only on the resonance frequency and thus is independent of refractive index and size, a result which is valid even when the resonator is atomic-scale. Furthermore, we derive scaling limits for the bandwidth of dielectric antennas and describe a cylindrical mode which is unique in its ability to support extremely large bandwidths even when the particle size is deeply subwavelength. Finally, we show that higher Q antennas may couple more efficiently to an external load, but the optimal absorption cross-section depends only on the resonance frequency.
利用米氏理论,我们得出了一些关于球形和圆柱形介质天线共振的一般性结果。具体而言,我们证明了辐射受限天线的峰值散射截面仅取决于共振频率,因此与折射率和尺寸无关,即使谐振器为原子尺度,该结果依然有效。此外,我们推导出了介质天线带宽的缩放极限,并描述了一种圆柱形模式,即使颗粒尺寸远低于亚波长,该模式仍能以其独特的能力支持极宽的带宽。最后,我们表明,品质因数较高的天线可能会更有效地耦合到外部负载,但最佳吸收截面仅取决于共振频率。