Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC)

Approved for public release, distribution unlimited === Electron Beam Induced Current (EBIC) measurements were performed on GaN nanowires to determine minority charge carrier diffusion length, d L . Although EBIC has been used to characterize bulk and thin film materials, very little is known abo...

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Main Author: Ong, Chiou Perng
Other Authors: Haegel, Nancy M.
Published: Monterey, California. Naval Postgraduate School 2012
Online Access:http://hdl.handle.net/10945/4363
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spelling ndltd-nps.edu-oai-calhoun.nps.edu-10945-43632014-12-04T04:08:37Z Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC) Ong, Chiou Perng Haegel, Nancy M. Karunasiri, Gamani. Naval Postgraduate School (U.S.) Approved for public release, distribution unlimited Electron Beam Induced Current (EBIC) measurements were performed on GaN nanowires to determine minority charge carrier diffusion length, d L . Although EBIC has been used to characterize bulk and thin film materials, very little is known about near contact transport in GaN nanowires. The results obtained from EBIC will be compared against those obtained from a novel Nearfield Scanning Optical Microscopy (NSOM) method developed at the Naval Postgraduate School (NPS) that provides an alternative method for the determination of d L . Two types of nanowires were investigated: n-type GaN/AlGaN (core-shell) nanowires and unintentionally doped (UID) n-type GaN uncoated nanowires. By exciting the nanowires using an electron beam in the SEM, the EBIC signal collected at the metal-semionductor Schottky contact represents a diffusive current. Diffusion length can then be extracted from the spatial variation of the EBIC signal. The diffusion length of holes in the GaN/AlGaN wires was measured to be 1.2 um ± 22% and the diffusion length of holes in the UID GaN uncoated wires was measured to be 0.40 um ± 24%. The results demonstrate the dependence of diffusion length on the diameter and surface behavior of the nanowire. 2012-03-14T17:41:39Z 2012-03-14T17:41:39Z 2009-12 Thesis http://hdl.handle.net/10945/4363 503139245 Monterey, California. Naval Postgraduate School
collection NDLTD
sources NDLTD
description Approved for public release, distribution unlimited === Electron Beam Induced Current (EBIC) measurements were performed on GaN nanowires to determine minority charge carrier diffusion length, d L . Although EBIC has been used to characterize bulk and thin film materials, very little is known about near contact transport in GaN nanowires. The results obtained from EBIC will be compared against those obtained from a novel Nearfield Scanning Optical Microscopy (NSOM) method developed at the Naval Postgraduate School (NPS) that provides an alternative method for the determination of d L . Two types of nanowires were investigated: n-type GaN/AlGaN (core-shell) nanowires and unintentionally doped (UID) n-type GaN uncoated nanowires. By exciting the nanowires using an electron beam in the SEM, the EBIC signal collected at the metal-semionductor Schottky contact represents a diffusive current. Diffusion length can then be extracted from the spatial variation of the EBIC signal. The diffusion length of holes in the GaN/AlGaN wires was measured to be 1.2 um ± 22% and the diffusion length of holes in the UID GaN uncoated wires was measured to be 0.40 um ± 24%. The results demonstrate the dependence of diffusion length on the diameter and surface behavior of the nanowire.
author2 Haegel, Nancy M.
author_facet Haegel, Nancy M.
Ong, Chiou Perng
author Ong, Chiou Perng
spellingShingle Ong, Chiou Perng
Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC)
author_sort Ong, Chiou Perng
title Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC)
title_short Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC)
title_full Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC)
title_fullStr Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC)
title_full_unstemmed Measurement of minority charge carrier diffusion length in Gallium Nitride nanowires using Electron Beam InducedCurrent (EBIC)
title_sort measurement of minority charge carrier diffusion length in gallium nitride nanowires using electron beam inducedcurrent (ebic)
publisher Monterey, California. Naval Postgraduate School
publishDate 2012
url http://hdl.handle.net/10945/4363
work_keys_str_mv AT ongchiouperng measurementofminoritychargecarrierdiffusionlengthingalliumnitridenanowiresusingelectronbeaminducedcurrentebic
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