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Broadband Light Collection Efficiency Enhancement of Carbon Nanotube Excitons Coupled to Metallo-Dielectric Antenna Arrays

Authors :
Kamran Shayan
Jeffrey L. Blackburn
Xiangzhi Li
Stefan Strauf
Kevin S. Mistry
Xiaoqing Kong
Yue Luo
Claire Rabut
Stephanie S. Lee
Source :
ACS Photonics. 5:289-294
Publication Year :
2017
Publisher :
American Chemical Society (ACS), 2017.

Abstract

The realization of on-chip quantum networks ideally requires lossless interfaces between photons and solid-state quantum emitters. We propose and demonstrate on-chip arrays of metallo-dielectric antennas (MDA) that are tailored toward efficient and broadband light collection from individual embedded carbon nanotube quantum emitters by trapping air gaps on chip that form cavity modes. Scalable implementation is realized by employing polymer layer dry-transfer techniques that avoid solvent incompatibility issues, as well as a planar design that avoids solid-immersion lenses. Cryogenic measurements demonstrate 7-fold enhanced exciton intensity when compared to emitters located on bare wafers, corresponding to a light collection efficiency (LCE) up to 92% in the best case (average LCE of 69%) into a narrow output cone of ±15° that enables a priori fiber-to-chip butt coupling. The demonstrated MDA arrays are directly compatible with other quantum systems, particularly 2D materials, toward enabling efficient on...

Details

ISSN :
23304022
Volume :
5
Database :
OpenAIRE
Journal :
ACS Photonics
Accession number :
edsair.doi...........e6ace25371585c20b0687cfd73ad6823
Full Text :
https://doi.org/10.1021/acsphotonics.7b00786