Artuso Ryan D, Bryant Garnett W
Joint Quantum Institute and Department of Physics, University of Maryland, College Park, Maryland 20742-4111, USA.
Nano Lett. 2008 Jul;8(7):2106-11. doi: 10.1021/nl800921z. Epub 2008 Jun 18.
In this communication, we study the optical response of a semiconductor quantum dot (SQD) coupled with a metal nanoparticle (MNP). In particular, we explore the relationship between the size of the constituents and the response of the system. We identify, here, three distinct regimes of behavior in the strong field limit that each exhibit novel properties. In the first regime, we find that the energy absorption spectrum displays an asymmetrical Fano shape (as previously predicted). It occurs when there is interference between the applied field and the induced field produced by the SQD at the MNP. When the coupling is increased by increasing the size of the SQD, we find a double peaked Fano structure in the response. This second peak occurs when the induced field becomes stronger than the external field. As the coupling is further increased by increasing the sizes of both the SQD and the MNP, we find a regime of bistability. This originates when the self-interaction of the SQD becomes significant. We explore these three regimes in detail and set bounds on each.
在本通讯中,我们研究了与金属纳米粒子(MNP)耦合的半导体量子点(SQD)的光学响应。特别地,我们探讨了组成部分的尺寸与系统响应之间的关系。在此,我们确定了强场极限下三种不同的行为模式,每种模式都展现出新颖的特性。在第一种模式中,我们发现能量吸收光谱呈现出不对称的法诺形状(如先前预测的那样)。当外加场与量子点在金属纳米粒子处产生的感应场之间存在干涉时就会出现这种情况。当通过增大量子点的尺寸来增强耦合时,我们在响应中发现了双峰法诺结构。当感应场变得比外部场更强时,就会出现第二个峰。随着通过增大量子点和金属纳米粒子的尺寸进一步增强耦合,我们发现了双稳态势。这源于量子点的自相互作用变得显著。我们详细探讨了这三种模式,并为每种模式设定了界限。