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1.
Nano Lett ; 14(5): 2256-64, 2014 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-24678960

RESUMO

We probe and control the optical properties of emission centers forming in radial heterostructure GaAs-Al0.3Ga0.7As nanowires and show that these emitters, located in Al0.3Ga0.7As layers, can exhibit quantum-dot like characteristics. We employ a radio frequency surface acoustic wave to dynamically control their emission energy, and occupancy state on a nanosecond time scale. In the spectral oscillations, we identify unambiguous signatures arising from both the mechanical and electrical component of the surface acoustic wave. In addition, different emission lines of a single emission center exhibit pronounced anticorrelated intensity oscillations during the acoustic cycle. These arise from a dynamically triggered carrier extraction out of the emission center to a continuum in the radial heterostructure. Using finite element modeling and Wentzel-Kramers-Brillouin theory we identify quantum tunneling as the underlying mechanism. These simulation results quantitatively reproduce the observed switching and show that in our systems these emission centers are spatially separated from the continuum by >10.5 nm.

2.
Nano Lett ; 11(4): 1512-7, 2011 Apr 13.
Artigo em Inglês | MEDLINE | ID: mdl-21355606

RESUMO

We report on optical experiments performed on individual GaAs nanowires and the manipulation of their temporal emission characteristics using a surface acoustic wave. We find a pronounced, characteristic suppression of the emission intensity for the surface acoustic wave propagation aligned with the axis of the nanowire. Furthermore, we demonstrate that this quenching is dynamical as it shows a pronounced modulation as the local phase of the surface acoustic wave is tuned. These effects are strongly reduced for a surface acoustic wave applied in the direction perpendicular to the axis of the nanowire due to their inherent one-dimensional geometry. We resolve a fully dynamic modulation of the nanowire emission up to 678 MHz not limited by the physical properties of the nanowires.


Assuntos
Arsenicais/química , Gálio/química , Nanoestruturas/química , Nanoestruturas/ultraestrutura , Acústica , Luz , Teste de Materiais , Tamanho da Partícula , Espalhamento de Radiação , Vibração
3.
Opt Express ; 19 Suppl 1: A7-19, 2011 Jan 03.
Artigo em Inglês | MEDLINE | ID: mdl-21263715

RESUMO

Organic light-emitting diodes (OLEDs) usually exhibit a low light outcoupling efficiency because a large fraction of power is lost to surface plasmons (SPs) and waveguide modes. In this paper it is demonstrated that periodic grating structures with almost µm-scale can be used to extract SPs as well as waveguide modes and therefore enhance the outcoupling efficiency in light-emitting thin film structures. The gratings are fabricated by nanoimprint lithography using a commercially available diffraction grating as a mold which is pressed into a polymer resist. The outcoupling of SPs and waveguide modes is detected in fluorescent organic films adjacent to a thin metal layer in angular dependent photoluminescence measurements. Scattering up to 5th-order is observed and the extracted modes are identified by comparison to the SP and waveguide dispersion obtained from optical simulations. In order to demonstrate the low-cost, high quality and large area applicability of grating structures in optoelectronic devices, we also present SP extraction using a grating structure fabricated by a common DVD stamp.


Assuntos
Nanotecnologia/métodos , Ressonância de Plasmônio de Superfície/métodos , Algoritmos , Eletrônica , Corantes Fluorescentes/química , Luz , Luminescência , Microscopia de Força Atômica/métodos , Modelos Estatísticos , Óptica e Fotônica , Compostos Orgânicos/química , Espalhamento de Radiação
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