<div class="csl-bib-body">
<div class="csl-entry">Niggas, A., Spannagl, S., Aumayr, F., Wilhelm, R. A., Frank, C., Breuer, L., & Schleberger, M. (2026). Exploring the Potential Energy Threshold: HCI Irradiation of 2D Materials and CaF₂ with Au<sup>7</sup><sup>9</sup><sup>+</sup> at HITRAP. In <i>23rd SPARC Topical Workshop : Book of Abstracts</i> (pp. 50–50).</div>
</div>
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/231004
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dc.description.abstract
Upon impact with a surface, slow highly charged ions (HCIs) deposit large amounts of potential energy within the top few atomic layers of the material. Depending on material properties, this can trigger relaxation processes that create nanostructures such as hillocks, craters, or pores in the material surface [1,2] - often in a similar manner as swift heavy ions (SHIs) [3]. For atomically thin graphene, so far no pore formation could be observed after irradiation with HCIs (up to charge states of typically 40+) [4], while SHIs have been shown to induce cracks [5]. This contrast suggests the existence of a material-specific potential energy threshold for nanostructuring, as it has previously been found for bulk samples [1], with CaF2 being a particularly well investigated case. Yet, irradiations with ions in very high charge states (>> 40+) remain scarce for both bulk and 2D materials.
Within one of its first official beam times, HITRAP offered a perfect opportunity to explore this uncharted territory of (very) slow but highly charged ion impacts on surfaces: 6 keV/u Au79+ ions were supplied by HITRAP and used to irradiate a set of different samples: a CaF2 crystal, quasi- freestanding graphene (1-, 2- and 3-layer systems) as well as transition metal dichalcogenide monolayers on various substrates. Post-irradiation characterisation was performed using atomic force microscopy (AFM), scanning electron microscopy (SEM), and scanning transmission electron microscopy (STEM). Despite the high charge state, we observed no defects that can be unambiguously attributed to individual HCI impacts. We attribute this to an ion fluence that was likely too low to produce defect densities resolvable by these microscopy techniques.
In this contribution I will first introduce the topic of slow highly charged ion induced nanostructuring, followed by a discussion of our results from HITRAP-irradiated sample surfaces.
en
dc.language.iso
en
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dc.subject
ion surface collisions
en
dc.subject
highly charged ions
en
dc.title
Exploring the Potential Energy Threshold: HCI Irradiation of 2D Materials and CaF₂ with Au⁷⁹⁺ at HITRAP
en
dc.title.alternative
HCI – Surface Experiments at HITRAP
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dc.type
Inproceedings
en
dc.type
Konferenzbeitrag
de
dc.contributor.affiliation
TU Wien, Austria
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dc.contributor.affiliation
University of Duisburg-Essen, Germany
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dc.contributor.affiliation
University of Duisburg-Essen, Germany
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dc.contributor.affiliation
University of Duisburg-Essen, Germany
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dc.description.startpage
50
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dc.description.endpage
50
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dc.type.category
Abstract Book Contribution
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tuw.booktitle
23rd SPARC Topical Workshop : Book of Abstracts
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tuw.researchTopic.id
M1
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tuw.researchTopic.name
Surfaces and Interfaces
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tuw.researchTopic.value
100
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tuw.publication.orgunit
E134-03 - Forschungsbereich Atomic and Plasma Physics
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tuw.publication.orgunit
E056-04 - Fachbereich TU-DX: Towards Applications of 2D Materials
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dc.description.numberOfPages
1
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tuw.author.orcid
0000-0002-5838-5789
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tuw.author.orcid
0000-0002-9788-0934
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tuw.author.orcid
0000-0001-9451-5440
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tuw.author.orcid
0009-0009-9386-7319
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tuw.author.orcid
0000-0002-7797-9662
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tuw.author.orcid
0000-0002-5785-1186
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tuw.event.name
23rd Workshop of the Stored Particles Atomic physics Research Collaboration
en
tuw.event.startdate
11-09-2026
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tuw.event.enddate
15-09-2026
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tuw.event.online
Online
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tuw.event.type
Event for scientific audience
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tuw.event.place
Huizhou
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tuw.event.country
CN
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tuw.event.presenter
Niggas, Anna
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tuw.presentation.online
Online
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wb.sciencebranch
Physik, Astronomie
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wb.sciencebranch.oefos
1030
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wb.sciencebranch.value
100
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item.openairecristype
http://purl.org/coar/resource_type/c_5794
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item.grantfulltext
restricted
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item.cerifentitytype
Publications
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item.fulltext
no Fulltext
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item.languageiso639-1
en
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item.openairetype
conference paper
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crisitem.author.dept
E134-03 - Forschungsbereich Atomic and Plasma Physics
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crisitem.author.dept
TU Wien, Austria
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crisitem.author.dept
E134-03 - Forschungsbereich Atomic and Plasma Physics
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crisitem.author.dept
E134-03 - Forschungsbereich Atomic and Plasma Physics