|国家预印本平台
首页|Tunable negative permeability in a quantum plasmonic metamaterial

Tunable negative permeability in a quantum plasmonic metamaterial

Tunable negative permeability in a quantum plasmonic metamaterial

来源:Arxiv_logoArxiv
英文摘要

We consider the integration of quantum emitters into a negative permeability metamaterial design in order to introduce tunability as well as nonlinear behavior. The unit cell of our metamaterial is a ring of metamolecules, each consisting of a metal nanoparticle and a two-level semiconductor quantum dot (QD). Without the QDs, the ring of the unit cell is known to act as an artificial optical magnetic resonator. By adding the QDs we show that a Fano interference profile is introduced into the magnetic field scattered from the ring. This induced interference is shown to cause an appreciable effect in the collective magnetic resonance of the unit cell. We find that the interference provides a means to tune the response of the negative permeability metamaterial. The exploitation of the QD's inherent nonlinearity is proposed to modulate the metamaterial's magnetic response with a separate control field.

K. R. McEnery、M. S. Tame、S. A. Maier、M. S. Kim

10.1103/PhysRevA.89.013822

半导体技术光电子技术

K. R. McEnery,M. S. Tame,S. A. Maier,M. S. Kim.Tunable negative permeability in a quantum plasmonic metamaterial[EB/OL].(2025-07-01)[2025-07-21].https://arxiv.org/abs/1401.5402.点此复制

评论