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2017 ; 473
(2206
): 20170433
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Nonlinear graphene plasmonics
#MMPMID29118665
Ooi KJA
; Tan DTH
Proc Math Phys Eng Sci
2017[Oct]; 473
(2206
): 20170433
PMID29118665
show ga
The rapid development of graphene has opened up exciting new fields in graphene
plasmonics and nonlinear optics. Graphene's unique two-dimensional band structure
provides extraordinary linear and nonlinear optical properties, which have led to
extreme optical confinement in graphene plasmonics and ultrahigh nonlinear
optical coefficients, respectively. The synergy between graphene's linear and
nonlinear optical properties gave rise to nonlinear graphene plasmonics, which
greatly augments graphene-based nonlinear device performance beyond a
billion-fold. This nascent field of research will eventually find far-reaching
revolutionary technological applications that require device miniaturization, low
power consumption and a broad range of operating wavelengths approaching the
far-infrared, such as optical computing, medical instrumentation and security
applications.