Active Tuning of Spontaneous Emission by Mie-Resonant Dielectric Metasurfaces

被引:116
作者
Bohn, Justus [1 ]
Bucher, Tobias [1 ]
Chong, Katie E. [2 ]
Komar, Andrei [2 ]
Choi, Duk-Yong [3 ]
Neshev, Dragomir N. [2 ]
Kivshar, Yuri S. [2 ]
Pertsch, Thomas [1 ]
Staude, Isabelle [1 ]
机构
[1] Friedrich Schiller Univ Jena, Abbe Ctr Photon, Inst Appl Phys, D-07745 Jena, Germany
[2] Australian Natl Univ, Nonlinear Phys Ctr, Canberra, ACT 2601, Australia
[3] Australian Natl Univ, Laser Phys Ctr, Res Sch Phys & Engn, Canberra, ACT 2601, Australia
基金
澳大利亚研究理事会;
关键词
All-dielectric nanophotonics; dielectric nanoantennas; Mie resonances; emission enhancement; tunable metasurfaces; active metasurfaces; liquid crystals; 3RD-HARMONIC GENERATION; LIGHT-EMISSION; POLARIZATION; NANOANTENNAS; MANIPULATION; OPTICS; DRIVEN; PHASE; GAP;
D O I
10.1021/acs.nanolett.8b00475
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Mie-resonant dielectric metasurfaces offer comprehensive opportunities for the manipulation of light fields with high efficiency. Additionally, various strategies for the dynamic tuning of the optical response of such metasurfaces were demonstrated, making them important candidates for reconfigurable optical devices. However, dynamic control of the light-emission properties of active Mie-resonant dielectric metasurfaces by an external control parameter has not been demonstrated so far. Here, we experimentally demonstrate the dynamic tuning of spontaneous emission from a Mie-resonant dielectric metasurface that is situated on a fluorescent substrate and embedded into a liquid crystal cell. By switching the liquid crystal from the nematic state to the isotropic state via control of the cell temperature, we induce a shift of the spectral position of the metasurface resonances. This results in a change of the local photonic density of states, which, in turn, governs the enhancement of spontaneous emission from the substrate. Specifically, we observe spectral tuning of both the electric and magnetic dipole resonances, resulting in a 2-fold increase of the emission intensity at lambda approximate to 900 nm. Our results demonstrate a viable strategy to realize flat tunable light sources based on dielectric metasurfaces.
引用
收藏
页码:3461 / 3465
页数:5
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