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  5. Radiation Engineering of Optical Antennas for Maximum Field Enhancement

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Article
en
2011

Radiation Engineering of Optical Antennas for Maximum Field Enhancement

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en
2011
Vol 11 (7)
Vol. 11
DOI: 10.1021/nl2010862

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Eli Yablonovitch
Eli Yablonovitch

University of California, Berkeley

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Tae Joon Seok
Arash Jamshidi
Myung‐Ki Kim
+9 more

Abstract

Optical antennas have generated much interest in recent years due to their ability to focus optical energy beyond the diffraction limit, benefiting a broad range of applications such as sensitive photodetection, magnetic storage, and surface-enhanced Raman spectroscopy. To achieve the maximum field enhancement for an optical antenna, parameters such as the antenna dimensions, loading conditions, and coupling efficiency have been previously studied. Here, we present a framework, based on coupled-mode theory, to achieve maximum field enhancement in optical antennas through optimization of optical antennas' radiation characteristics. We demonstrate that the optimum condition is achieved when the radiation quality factor (Q(rad)) of optical antennas is matched to their absorption quality factor (Q(abs)). We achieve this condition experimentally by fabricating the optical antennas on a dielectric (SiO(2)) coated ground plane (metal substrate) and controlling the antenna radiation through optimizing the dielectric thickness. The dielectric thickness at which the matching condition occurs is approximately half of the quarter-wavelength thickness, typically used to achieve constructive interference, and leads to ∼20% higher field enhancement relative to a quarter-wavelength thick dielectric layer.

How to cite this publication

Tae Joon Seok, Arash Jamshidi, Myung‐Ki Kim, Scott Dhuey, Amit Lakhani, Hyuck Choo, P. James Schuck, Stefano Cabrini, Adam Schwartzberg, Jeffrey Bokor, Eli Yablonovitch, Ming C. Wu (2011). Radiation Engineering of Optical Antennas for Maximum Field Enhancement. , 11(7), DOI: https://doi.org/10.1021/nl2010862.

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Publication Details

Type

Article

Year

2011

Authors

12

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/nl2010862

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