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Influence of electronic energy deposition on the structural modification of swift heavy-ion-irradiated amorphous germanium layers

dc.contributor.authorSteinbach, Tobias
dc.contributor.authorSchnohr, Claudia
dc.contributor.authorKluth, Patrick
dc.contributor.authorGiulian, Raquel
dc.contributor.authorAraujo, Leandro
dc.contributor.authorSprouster, David
dc.contributor.authorRidgway, Mark C
dc.contributor.authorWesch, Werner
dc.date.accessioned2015-12-10T22:18:41Z
dc.date.available2015-12-10T22:18:41Z
dc.date.issued2011
dc.date.updated2015-12-09T08:37:44Z
dc.description.abstractSwift heavy-ion (SHI) irradiation of amorphous germanium (a-Ge) layers leads to a strong volume expansion accompanied by a nonsaturating irreversible plastic deformation (ion hammering), which are consequences of the high local electronic energy deposition within the region of the a-Ge layer. We present a detailed study of the influence of SHI irradiation parameters on the effect of plastic deformation and structural modification. Specially prepared a-Ge layers were irradiated using two SHI energies and different angles of incidence, thus resulting in a variation of the electronic energy deposition per depth εe between 14.0 and 38.6 keV nm-1. For all irradiation parameters used a strong swelling of the irradiated material was observed, which is caused by the formation and growth of randomly distributed voids, leading to a gradual transformation of the amorphous layer into a sponge-like porous structure as established by cross-section scanning electron microscopy investigations. The swelling depends linearly on the ion fluence and on the value of εe, thus clearly demonstrating that the structural changes are determined solely by the electronic energy deposited within the amorphous layer. Plastic deformation shows a superlinear dependence on the ion fluence due to the simultaneous volume expansion. This influence of structural modification on plastic deformation is described by a simple approach, thus allowing estimation of the deformation yield. With these results the threshold values of the electronic energy deposition for the onset of both structural modification and plastic deformation due to SHI irradiation are determined. Furthermore, based on these results, the longstanding question concerning the reason for the structural modification observed in SHI-irradiated crystalline Ge is answered.
dc.identifier.issn1098-0121
dc.identifier.urihttp://hdl.handle.net/1885/51521
dc.publisherAmerican Physical Society
dc.sourcePhysical Review B: Condensed Matter and Materials
dc.titleInfluence of electronic energy deposition on the structural modification of swift heavy-ion-irradiated amorphous germanium layers
dc.typeJournal article
local.bibliographicCitation.issue054113
local.bibliographicCitation.lastpage8
local.bibliographicCitation.startpage1
local.contributor.affiliationSteinbach, Tobias, Friedrich Schiller University of Jena
local.contributor.affiliationSchnohr, Claudia, Friedrich Schiller University
local.contributor.affiliationKluth, Patrick, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationGiulian, Raquel, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationAraujo, Leandro, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationSprouster, David, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationRidgway, Mark C, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationWesch, Werner, Friedrich Schiller University of Jena
local.contributor.authoruidKluth, Patrick, u4054452
local.contributor.authoruidGiulian, Raquel, u4174583
local.contributor.authoruidAraujo, Leandro, u4363964
local.contributor.authoruidSprouster, David, u4301091
local.contributor.authoruidRidgway, Mark C, u9001886
local.description.notesImported from ARIES
local.identifier.absfor020406 - Surfaces and Structural Properties of Condensed Matter
local.identifier.absseo970102 - Expanding Knowledge in the Physical Sciences
local.identifier.ariespublicationU3488905xPUB226
local.identifier.citationvolume83
local.identifier.doi10.1103/PhysRevB.83.054113
local.identifier.scopusID2-s2.0-79953171890
local.identifier.thomsonID000287712100002
local.type.statusPublished Version

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