Controlled orientation and alignment of rod‐shaped plasmonic nanoparticles are of great interest for many applications. Herein, it is demonstrated that the nonlinear optical response of gold nanorod suspensions is dynamically controlled by electric field‐induced orientation. Merely by switching incident light polarization, the longitudinal and transverse surface plasmon resonance (SPR) absorption peaks are modulated with opposite trends, and the resulting optical nonlinearity is revealed from self‐trapping of plasmonic resonant solitons. Moreover, even with a very low concentration of fluorescent molecules, a significant increase in the fluorescent signal is observed with a transmittance‐type volume detection scheme. Such an enhancement is ...
Recent studies of the coupling between the plasmonic excitations of metallic nanostructures with the...
A major aim in experimental nano- and quantum optics is observing and controlling the interaction be...
Nonlinear optical materials comprise the foundation of modern photonics, offering functionalities ra...
The optical properties of gold nanorods suspended in toluene are studied as a function of orientatio...
When light interacts with metal nanostructures, it can couple to free-electron excitations near the ...
\u3cp\u3eWe numerically investigate the second harmonic generation from different plasmonic systems ...
Robust propagation of self-trapped light over distances exceeding 25 diffraction lengths has been de...
Nonlinear optical techniques are promising tools in changing the landscape of label-free optical ima...
Metallic nanostructures of dimensions below the wavelength of light show remarkable optical properti...
In the past decade, the development of artificial materials exhibiting novel optical properties has ...
International audienceto reversible liquid-crystal like ordering. We can expect strong induced biref...
By using gold nanorods as an example, we report the dynamic and reversible tuning of the plasmonic p...
We demonstrate two different types of coupled beam propagation dynamics in colloidal gold nanosuspen...
Using numerical simulations, we examine the change in plasmon resonance behavior in gold nanorod str...
The second order nonlinear optical response of gold nanoprisms arrays is investigated by means of se...
Recent studies of the coupling between the plasmonic excitations of metallic nanostructures with the...
A major aim in experimental nano- and quantum optics is observing and controlling the interaction be...
Nonlinear optical materials comprise the foundation of modern photonics, offering functionalities ra...
The optical properties of gold nanorods suspended in toluene are studied as a function of orientatio...
When light interacts with metal nanostructures, it can couple to free-electron excitations near the ...
\u3cp\u3eWe numerically investigate the second harmonic generation from different plasmonic systems ...
Robust propagation of self-trapped light over distances exceeding 25 diffraction lengths has been de...
Nonlinear optical techniques are promising tools in changing the landscape of label-free optical ima...
Metallic nanostructures of dimensions below the wavelength of light show remarkable optical properti...
In the past decade, the development of artificial materials exhibiting novel optical properties has ...
International audienceto reversible liquid-crystal like ordering. We can expect strong induced biref...
By using gold nanorods as an example, we report the dynamic and reversible tuning of the plasmonic p...
We demonstrate two different types of coupled beam propagation dynamics in colloidal gold nanosuspen...
Using numerical simulations, we examine the change in plasmon resonance behavior in gold nanorod str...
The second order nonlinear optical response of gold nanoprisms arrays is investigated by means of se...
Recent studies of the coupling between the plasmonic excitations of metallic nanostructures with the...
A major aim in experimental nano- and quantum optics is observing and controlling the interaction be...
Nonlinear optical materials comprise the foundation of modern photonics, offering functionalities ra...