2011
DOI: 10.1364/ome.1.000046
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Nonlinear chiral imaging of subwavelength-sized twisted-cross gold nanodimers [Invited]

Abstract: We perform second-harmonic generation (SHG) microscopy with circularly polarized (CP) light to measure chirality of individual twistedcross gold nanodimers. The chiral signatures, based on different SHG response for the two CP components of incident light, are clearly visible even with off-resonance excitation. The SHG responses of individual nanodimers are found to vary by about a factor of five. The technique thus has very high sensitivity to the nanoscale deformations of the structure. The chiral signatures… Show more

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Cited by 70 publications
(66 citation statements)
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“…Fabrication variations in individual structures can indeed play a nontrivial role in the SHG from plasmonic nanostructures. 13,45 In summary, the SHG from a Fano resonant system has been studied both theoretically and experimentally. The nonlinear SHG in the engineered silver heptamers is shown to be significantly stronger when utilizing the generation of a high near-field at the fundamental wavelength by reducing scattering losses, while assuring a strong scattering at the second harmonic.…”
Section: * S Supporting Informationmentioning
confidence: 99%
“…Fabrication variations in individual structures can indeed play a nontrivial role in the SHG from plasmonic nanostructures. 13,45 In summary, the SHG from a Fano resonant system has been studied both theoretically and experimentally. The nonlinear SHG in the engineered silver heptamers is shown to be significantly stronger when utilizing the generation of a high near-field at the fundamental wavelength by reducing scattering losses, while assuring a strong scattering at the second harmonic.…”
Section: * S Supporting Informationmentioning
confidence: 99%
“…Overcoming this major obstacle would lead to novel functional materials based on the control of both electric and magnetic material responses at optical frequencies, namely, to negative refractive index [10][11][12] , chirality [13][14][15][16][17][18] and subwavelength imaging 19 as well as to compact nanolasers and spasers 20,21 . Finally, active metamaterials might also enter new, unexplored areas such as quantum metamaterials [22][23][24] .…”
mentioning
confidence: 99%
“…The experimental study is performed with second harmonic generation (SHG) microscopy, a technique whose usefulness for visualizing fi eld enhancements in nanostructures has been demonstrated in several works already. [22][23][24][25][26][27] We use ultrafast pulsed lasers ( ∼ 100 fs, 82 MHz), which are capable of delivering very high electric fi eld intensities to the electron population in the nanostructures. When the intense electric fi eld of light becomes comparable with the electric near-fi elds, the oscillations of the electron density are driven in the nonlinear (anharmonic) regime.…”
mentioning
confidence: 99%