Plasmonic circuit for second-order spatial differentiation at the subwavelength scale
Author(s) -
Yongsop Hwang,
Timothy J. Davis,
Jiao Lin,
Xiaocong Yuan
Publication year - 2018
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.26.007368
Subject(s) - plasmon , optics , physics , plasmonic lens , wavelength , planar , finite difference time domain method , surface plasmon , optoelectronics , surface plasmon polariton , computer science , computer graphics (images)
We suggest a plasmonic nanodevice for performing the second-order spatial derivative of light fields. The device consists of five gold nanorods arranged to evanescently couple to each other so that emit cross-polarized output proportional to the second-order differentiation of the incident wave. A theoretical model based on the electrostatic eigenmode analysis is derived and numerical simulations using the finite-difference time-domain methods are provided as supporting evidence. It is shown in both the analytic and numerical methods that the proposed plasmonic circuit performs second-order differentiation of the phase of the incident light field in transmission mode with a subwavelength planar resolution. The resolution of 0.29 λ -1 is numerically demonstrated for a 20 nm thick circuit at the wavelength of 700 nm. The suggested plasmonic device has potential application in miniaturized systems for all-optical computation.
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