<div class="csl-bib-body">
<div class="csl-entry">Schachinger, T., Hartel, P., Lu, P., Löffler, S., Obermair, M., Dries, M., Gerthens, D., Dunin-Borkowski, R., & Schattschneider, P. (2021). Experimental realization of a 𝜋/2 vortex mode converter for electrons using a spherical aberration corrector. <i>Ultramicroscopy</i>, <i>229</i>(113340), 113340. https://doi.org/10.1016/j.ultramic.2021.113340</div>
</div>
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dc.identifier.issn
0304-3991
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dc.identifier.uri
http://hdl.handle.net/20.500.12708/138476
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dc.description.abstract
In light optics, beams with orbital angular momentum (OAM) can be produced by employing a properly-tuned
two-cylinder-lens arrangement, also called 𝜋/2 mode converter. It is not possible to convey this concept directly
to the beam in an electron microscope due to the non-existence of cylinder lenses in commercial transmission
electron microscopes (TEMs). A viable work-around are readily-available electron optical elements in the form
of quadrupole lenses. In a proof-of-principle experiment in 2012, it has been shown that a single quadrupole
in combination with a Hilbert phase-plate produces a spatially-confined, transient vortex mode.
Here, an analogue to an optical 𝜋/2 mode converter is realized by repurposing a CEOS DCOR probe
corrector in an aberration corrected TEM in a way that it resembles a dual cylinder lens using two quadrupoles.
In order to verify the presence of OAM in the output beam, a fork dislocation grating is used as an OAM
analyser. The possibility to use magnetic quadrupole fields instead of, e.g., prefabricated fork dislocation
gratings to produce electron beams carrying OAM enhances the beam brightness by almost an order of
magnitude and delivers switchable high-mode purity vortex beams without unwanted side-bands.
en
dc.publisher
ELSEVIER
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dc.relation.ispartof
Ultramicroscopy
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dc.subject
Electronic, Optical and Magnetic Materials
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dc.subject
Atomic and Molecular Physics, and Optics
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dc.subject
Instrumentation
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dc.title
Experimental realization of a 𝜋/2 vortex mode converter for electrons using a spherical aberration corrector
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dc.type
Artikel
de
dc.type
Article
en
dc.description.startpage
113340
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dc.type.category
Original Research Article
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tuw.container.volume
229
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tuw.container.issue
113340
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tuw.journal.peerreviewed
true
-
tuw.peerreviewed
true
-
wb.publication.intCoWork
International Co-publication
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tuw.researchTopic.id
Q3
-
tuw.researchTopic.id
Q5
-
tuw.researchTopic.id
M8
-
tuw.researchTopic.name
Quantum Modelling and Simulation
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tuw.researchTopic.name
Design and Engineering of Quantum Systems
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tuw.researchTopic.name
Structure-Property Relationship
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tuw.researchTopic.value
20
-
tuw.researchTopic.value
60
-
tuw.researchTopic.value
20
-
dcterms.isPartOf.title
Ultramicroscopy
-
tuw.publication.orgunit
E057-02 - Fachbereich Universitäre Serviceeinrichtung für Transmissions- Elektronenmikroskopie
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tuw.publication.orgunit
E138-03 - Forschungsbereich Functional and Magnetic Materials
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tuw.publisher.doi
10.1016/j.ultramic.2021.113340
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dc.identifier.eissn
1879-2723
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dc.description.numberOfPages
6
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tuw.author.orcid
0000-0003-2307-9092
-
tuw.author.orcid
0000-0003-0080-2495
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wb.sci
true
-
wb.sciencebranch
Physik, Astronomie
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wb.sciencebranch
Chemie
-
wb.sciencebranch.oefos
1030
-
wb.sciencebranch.oefos
1040
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item.fulltext
no Fulltext
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item.openairecristype
http://purl.org/coar/resource_type/c_2df8fbb1
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item.cerifentitytype
Publications
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item.openairetype
research article
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item.grantfulltext
none
-
crisitem.author.dept
E057-02 - Fachbereich Universitäre Serviceeinrichtung für Transmissions- Elektronenmikroskopie
-
crisitem.author.dept
E057-02 - Fachbereich Universitäre Serviceeinrichtung für Transmissions- Elektronenmikroskopie