We demonstrate efficient modification of the polarized light emission from single semiconductor nanowires by coupling this emission to surface plasmon polaritons on a metal grating. The polarization anisotropy of the emitted photoluminescence from single nanowires is compared for wires deposited on silica, a fiat gold film, and a shallow gold grating. By varying the orientation of the nanowire with respect to the grating grooves, the large intrinsic polarization anisotropy can be either suppressed or enhanced. This modification is interpreted by the appearance of an additional emission channel induced by surface plasmon polaritons and their conversion top-polarized radiation at the grating
Photoluminescence from finite semiconductor nanowires is theoretically investigated. We show experim...
Lighting applications require directional and polarization control of the emitted light, which is cu...
Photoluminescence from finite semiconductor nanowires is theoretically investigated. We show experim...
We demonstrate efficient modification of the polarized light emission from single semiconductor nano...
We demonstrate efficient modification of the polarized light emission from single semiconductor nano...
We demonstrate efficient modification of the polarized light emission from single semiconductor nano...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
We demonstrate a novel functionality of semiconductornanowires as local sources for surface plasmon ...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Photoluminescence from finite semiconductor nanowires is theoretically investigated. We show experim...
Lighting applications require directional and polarization control of the emitted light, which is cu...
Photoluminescence from finite semiconductor nanowires is theoretically investigated. We show experim...
We demonstrate efficient modification of the polarized light emission from single semiconductor nano...
We demonstrate efficient modification of the polarized light emission from single semiconductor nano...
We demonstrate efficient modification of the polarized light emission from single semiconductor nano...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
We demonstrate a novel functionality of semiconductornanowires as local sources for surface plasmon ...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
We demonstrate a novel functionality of semiconductor nanowires as local sources for surface plasmon...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Semiconductor nanowires are novel nanostructures full of promise for optical applications. Nanowires...
Photoluminescence from finite semiconductor nanowires is theoretically investigated. We show experim...
Lighting applications require directional and polarization control of the emitted light, which is cu...
Photoluminescence from finite semiconductor nanowires is theoretically investigated. We show experim...