We present a fully self‐assembly technique, based on Droplet Epitaxy, to fabricate semiconductor surfaces functionalized with asymmetric planar quantum dot molecules –metal nanoparticles hybrid systems for efficient THz generation. The role of growth parameters on molecule fabrication and metal nanoparticle alignment for the matching of the grown system with the design requirements is discussed.

Scarpellini, D., Bietti, S., Elborg, M., Kuroda, T., Nemcsics, A., BASSO BASSET, F., et al. (2016). Nanostructured Surfaces for Teraherz Generation. Intervento presentato a: MBE 2016, 19th International Conference on Molecular-Beam Epitaxy, Montpellier (France).

Nanostructured Surfaces for Teraherz Generation

SCARPELLINI, DAVID;BIETTI, SERGIO;BASSO BASSET, FRANCESCO;SANGUINETTI, STEFANO
2016

Abstract

We present a fully self‐assembly technique, based on Droplet Epitaxy, to fabricate semiconductor surfaces functionalized with asymmetric planar quantum dot molecules –metal nanoparticles hybrid systems for efficient THz generation. The role of growth parameters on molecule fabrication and metal nanoparticle alignment for the matching of the grown system with the design requirements is discussed.
abstract + poster
Quantum dot molecules; droplet epitaxy; gallium arsenide; nanostructured surfaces; nanoplasmonics; terahertz generation and spectroscopy
English
MBE 2016, 19th International Conference on Molecular-Beam Epitaxy
2016
2016
none
Scarpellini, D., Bietti, S., Elborg, M., Kuroda, T., Nemcsics, A., BASSO BASSET, F., et al. (2016). Nanostructured Surfaces for Teraherz Generation. Intervento presentato a: MBE 2016, 19th International Conference on Molecular-Beam Epitaxy, Montpellier (France).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/131864
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