Cargando…

Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfaces

High resolution field emission experiments from nanopatterned GaSb surfaces consisting of densely packed nanocones prepared by low ion-beam-energy sputtering are presented. Both uncovered and metal-covered nanopatterned surfaces were studied. Surprisingly, the field emission takes place by regular s...

Descripción completa

Detalles Bibliográficos
Autores principales: Kildemo, M., Inntjore Levinsen, Y., Le Roy, S., Søndergård, E.
Lenguaje:eng
Publicado: 2009
Materias:
XX
Acceso en línea:https://dx.doi.org/10.1116/1.3168562
http://cds.cern.ch/record/2256694
_version_ 1780953750460956672
author Kildemo, M.
Inntjore Levinsen, Y.
Le Roy, S.
Søndergård, E.
author_facet Kildemo, M.
Inntjore Levinsen, Y.
Le Roy, S.
Søndergård, E.
author_sort Kildemo, M.
collection CERN
description High resolution field emission experiments from nanopatterned GaSb surfaces consisting of densely packed nanocones prepared by low ion-beam-energy sputtering are presented. Both uncovered and metal-covered nanopatterned surfaces were studied. Surprisingly, the field emission takes place by regular steps in the field emitted current. Depending on the field, the steps are either regular, flat, plateaus, or saw-tooth shaped. To the author’s knowledge, this is the first time that such results have been reported. Each discrete jump in the field emission may be understood in terms of resonant tunneling through an extended surface space charge region in an n-type, high aspect ratio, single GaSb nanocone. The staircase shape may be understood from the spatial distribution of the aspect ratio of the cones.
id cern-2256694
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
record_format invenio
spelling cern-22566942019-09-30T06:29:59Zdoi:10.1116/1.3168562http://cds.cern.ch/record/2256694engKildemo, M.Inntjore Levinsen, Y.Le Roy, S.Søndergård, E.Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfacesXXHigh resolution field emission experiments from nanopatterned GaSb surfaces consisting of densely packed nanocones prepared by low ion-beam-energy sputtering are presented. Both uncovered and metal-covered nanopatterned surfaces were studied. Surprisingly, the field emission takes place by regular steps in the field emitted current. Depending on the field, the steps are either regular, flat, plateaus, or saw-tooth shaped. To the author’s knowledge, this is the first time that such results have been reported. Each discrete jump in the field emission may be understood in terms of resonant tunneling through an extended surface space charge region in an n-type, high aspect ratio, single GaSb nanocone. The staircase shape may be understood from the spatial distribution of the aspect ratio of the cones.oai:cds.cern.ch:22566942009
spellingShingle XX
Kildemo, M.
Inntjore Levinsen, Y.
Le Roy, S.
Søndergård, E.
Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfaces
title Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfaces
title_full Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfaces
title_fullStr Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfaces
title_full_unstemmed Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfaces
title_short Staircase and saw-tooth field emission steps from nanopatterned n-type GaSb surfaces
title_sort staircase and saw-tooth field emission steps from nanopatterned n-type gasb surfaces
topic XX
url https://dx.doi.org/10.1116/1.3168562
http://cds.cern.ch/record/2256694
work_keys_str_mv AT kildemom staircaseandsawtoothfieldemissionstepsfromnanopatternedntypegasbsurfaces
AT inntjorelevinseny staircaseandsawtoothfieldemissionstepsfromnanopatternedntypegasbsurfaces
AT leroys staircaseandsawtoothfieldemissionstepsfromnanopatternedntypegasbsurfaces
AT søndergarde staircaseandsawtoothfieldemissionstepsfromnanopatternedntypegasbsurfaces