Electron transport in modulation-doped GaAs v-groove quantum wires

We report the growth of modulation-doped GaAs/AlxGa1-xAs v-groove quantum wires and structural, electrical and optical investigations of their electronic states and transport properties. By using alternative group III precursors on partially SiO2 masked pre-patterned GaAs substrates, samples have be...

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Main Authors: Schwarz, A, Kaluza, A, Schapers, T, Hardtdegen, H, Luth, H, Meertens, D, Dieker, C, Maciel, A, Kim, J, O'Sullivan, E, Ryan, J
Format: Conference item
Published: Elsevier 2000
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author Schwarz, A
Kaluza, A
Schapers, T
Hardtdegen, H
Luth, H
Meertens, D
Dieker, C
Maciel, A
Kim, J
O'Sullivan, E
Ryan, J
author_facet Schwarz, A
Kaluza, A
Schapers, T
Hardtdegen, H
Luth, H
Meertens, D
Dieker, C
Maciel, A
Kim, J
O'Sullivan, E
Ryan, J
author_sort Schwarz, A
collection OXFORD
description We report the growth of modulation-doped GaAs/AlxGa1-xAs v-groove quantum wires and structural, electrical and optical investigations of their electronic states and transport properties. By using alternative group III precursors on partially SiO2 masked pre-patterned GaAs substrates, samples have been fabricated which permit electrical measurements of single isolated wire structures without the need for additional electron-beam lithography. Magneto-transport was measured as a function of tilt angle of the incident magnetic field to identify the formation of low-dimensional electron gases in different parts of the structure. Photoluminescence investigations reveal ID and 2D confined states which show different carrier heating when electric fields are applied along the wire structure. (C) 2000 Elsevier Science B.V, All rights reserved.
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spelling oxford-uuid:d53c80de-5cbb-416f-ba0f-2cd01bce76652022-03-27T08:24:31ZElectron transport in modulation-doped GaAs v-groove quantum wiresConference itemhttp://purl.org/coar/resource_type/c_5794uuid:d53c80de-5cbb-416f-ba0f-2cd01bce7665Symplectic Elements at OxfordElsevier2000Schwarz, AKaluza, ASchapers, THardtdegen, HLuth, HMeertens, DDieker, CMaciel, AKim, JO'Sullivan, ERyan, JWe report the growth of modulation-doped GaAs/AlxGa1-xAs v-groove quantum wires and structural, electrical and optical investigations of their electronic states and transport properties. By using alternative group III precursors on partially SiO2 masked pre-patterned GaAs substrates, samples have been fabricated which permit electrical measurements of single isolated wire structures without the need for additional electron-beam lithography. Magneto-transport was measured as a function of tilt angle of the incident magnetic field to identify the formation of low-dimensional electron gases in different parts of the structure. Photoluminescence investigations reveal ID and 2D confined states which show different carrier heating when electric fields are applied along the wire structure. (C) 2000 Elsevier Science B.V, All rights reserved.
spellingShingle Schwarz, A
Kaluza, A
Schapers, T
Hardtdegen, H
Luth, H
Meertens, D
Dieker, C
Maciel, A
Kim, J
O'Sullivan, E
Ryan, J
Electron transport in modulation-doped GaAs v-groove quantum wires
title Electron transport in modulation-doped GaAs v-groove quantum wires
title_full Electron transport in modulation-doped GaAs v-groove quantum wires
title_fullStr Electron transport in modulation-doped GaAs v-groove quantum wires
title_full_unstemmed Electron transport in modulation-doped GaAs v-groove quantum wires
title_short Electron transport in modulation-doped GaAs v-groove quantum wires
title_sort electron transport in modulation doped gaas v groove quantum wires
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