Hot-carrier photocurrent effects at graphene–metal interfaces
Carregant...
El pots comprar en digital a:
El pots comprar en paper a:
Títol de la revista
ISSN de la revista
Títol del volum
Col·laborador
Editor
Tribunal avaluador
Realitzat a/amb
Tipus de document
Article
Data publicació
Editor
IOP
Condicions d'accés
Accés obert
Llicència
Aquesta obra està protegida pels drets de propietat intel·lectual i industrial corresponents. Llevat que s'hi indiqui el contrari, els seus continguts estan subjectes a la llicència de Creative Commons: Reconeixement-NoComercial-SenseObraDerivada 3.0 Espanya
Publicacions relacionades
Datasets relacionats
Projecte CCD
Projecte
NANOANTENNAS - Nano-Optical Antennas for Tuneable Single Photon Super-Emitters (EC-FP7-247330)
GRANOP - Graphene Nano-Photonics (EC-FP7-294056)
CARBONLIGHT - Tunable light tightly bound to a single sheet of carbon atoms: graphene as a novel platform for nano-optoelectronics (EC-FP7-307806)
GRAPHENE - Graphene-Based Revolutions in ICT And Beyond (EC-FP7-604391)
GRANOP - Graphene Nano-Photonics (EC-FP7-294056)
CARBONLIGHT - Tunable light tightly bound to a single sheet of carbon atoms: graphene as a novel platform for nano-optoelectronics (EC-FP7-307806)
GRAPHENE - Graphene-Based Revolutions in ICT And Beyond (EC-FP7-604391)
Abstract
Photoexcitation of graphene leads to an interesting sequence of phenomena, some of which can be exploited in optoelectronic devices based on graphene. In particular, the efficient and ultrafast generation of an electron distribution with an elevated electron temperature and the concomitant generation of a photo-thermoelectric voltage at symmetry-breaking interfaces is of interest for photosensing and light harvesting. Here, we experimentally study the generated photocurrent at the graphene–metal interface, focusing on the time-resolved photocurrent, the effects of photon energy, Fermi energy and light polarization. We show that a single framework based on photo-thermoelectric photocurrent generation explains all experimental results.
Descripció
Persones/entitats
Document relacionat
Versió de
Citació
Ajut
Forma part
DOI
Dipòsit legal
ISBN
ISSN
0953-8984




