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dc.contributor.authorMøller, Morten
dc.contributor.otherJarvis, Samuel P.
dc.contributor.otherGuérinet, Laurent
dc.contributor.otherSharp, Peter
dc.contributor.otherWoolley, Richard
dc.contributor.otherRahe, Philipp
dc.contributor.otherMoriarty, Philip
dc.date.accessioned2016-11-14T02:39:21Z
dc.date.available2016-11-14T02:39:21Z
dc.date.issued2016-11-11
dc.identifier.urihttps://rdmc.nottingham.ac.uk/handle/internal/70
dc.description.abstractRaw data files used for and extraction routine. In this study an automated extraction routine is used to extract (desorb) single H atoms from H:Si(100)-2 x 1 surfaces with single atom specificity. The tip state influence on the desorption process is examined using a large set of experimental runs of the extraction routine.en_UK
dc.language.isoenen_UK
dc.publisherThe University of Nottinghamen_UK
dc.subject.lcshScanning tunneling microscopyen_UK
dc.subject.lcshAtoms -- Researchen_UK
dc.titleAutomated extraction of single H atoms with STM: tip state dependencyen_UK
dc.identifier.doihttp://doi.org/10.17639/nott.67
dc.subject.freeScanning Tunneling Microscopy (STM) Atomic Manipulationen_UK
dc.subject.jacsPhysical sciences::Physics::Chemical physics, Solid-state physicsen_UK
dc.subject.lcQ Science::QC Physics::QC170 Atomic physics. Constitution and properties of matteren_UK
dc.date.collection2015-09-23 - 2015-11-05en_UK
uon.divisionUniversity of Nottingham, UK Campus::Faculty of Science::School of Physics and Astronomyen_UK
uon.funder.controlledEngineering & Physical Sciences Research Councilen_UK
uon.datatypeScanning probe microscopy images (STM) and automation codeen_UK
uon.funder.freeEuropean Unionen_UK
uon.funder.freeLeverhulme Trusten_UK
uon.grantEP/G007837/1en_UK
uon.grantFP7 ICTFETen_UK
uon.grantEP/J500483/1en_UK
uon.grantECF-2015-005en_UK
uon.collectionmethodOmicron VT STM/AFM systemen_UK
uon.preservation.rarelyaccessedtrue


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