Livrables
The efficiency and sensitivity of more widely used IBA techniques will also be enhanced by several developments Cost efficient multidetector systems and electronics for ultrahigh sensitivity Rutherford backscattering IMEC KUL CNRS and forward scattering RBI IST will be developed and made available for TA
Shared Plan for Self-Sustainability of infrastructures developed and published on Ion Beam Web PortalAs Europes ion beam community transits from an advanced to a worldleading community it will need to have a coherent shared plan for selfsustainability which will be published on the Ion Beam Web Portal This will include elements of European and national funding expanded services to industry and a sharedaccess model that better utilises resources and infrastructure to serve emerging niche user markets that are keys to enabling wider European innovation and excellence
At least 15 presentations by consortium members at Fairs and ConferencesThe consortium members will regularly attend Fairs and Conferences and hold at least 15 presentations
External Advisory Board installedAt the kick-off meeting an External Advisory Board is appointed, which will regularly assess the project progress
Eight topical Newsletters on ion beam applications issued onlineA biannual Newsletter will inform scientists on recent research highlights upcoming events summer schools workshops conferences and call deadlines for ionbeam proposals Every issue will have a Topical Focus eg advanced simulation of ion beam modification single ion implantation for quantum computing quantitative hydrogen determination for novel materials applications of accelerator mass spectrometry in medicine etc written by consortium members
Final Standards and Protocols Report: Quality Assurance Manual updatedThe QA manual will be updated throughout the project as required and a final version available in month 36
Capillary-collimated beam spot below 100 nm at low-energy ion beam set-up available for TACNRS together with industry partner Orsay Physics will use their expertise in producing ultrathin capillaries to replace the standard apertures of the existing PELIICAEN platform This will not only vastly reduce beam size but also extend the life time of the aperture The development of apertures with long lifetimes and customertailored size will considerably expand the portfolio of techniques offered in TA
Documented procedures and rules for the proposal evaluation as decided at the kick-off meeting of the User Selection PanelThe User Selection Panel will meet for a kick-off meeting to review and agree upon the evaluation procedure and rules. The documentation will be made available to the public.
Quality Assurance Manual available and in useAs the project progresses a unified approach to each particular service and a comprehensive quality assurance and monitoring procedure is developed and published as a manual. This will be a “living document” and will be adapted as new services come on stream from the JRA activities and as the inter-comparisons between groups highlight best practice.
Report on software developments for multi-techniques analysis in a common data evaluationSoftware to make use of multi techniques analysis such as IBA and SIMS in a common data evaluation
Summer school 2021 in FinlandIn order to boost knowledge on the potential of ion beams four annual Summer Schools will be organized
Summer School 2022 in ItalyIn order to boost knowledge on the potential of ion beams four annual Summer Schools will be organized
MeV SIMS system with Reflectron TOF spectrometer and capillary ion beam micro-collimation avail-able for TAProgress in particle detectors for IBA applications is driven by the need to separate close molecular masses by MeV SIMS and distinguish neighbouring elements in depthresolved analysis by RBS and ERD Small fragmentation high desorption efficiency and minimal sample pretreatment have recently made MeV SIMS very attractive to new users over a wide range of applications Its analytical capabilities will be further explored in particular taking advantage of the possibility of combining it with other IBA techniques Existing MeV SIMS systems will be upgraded to provide higher mass resolution Reflectron mass analyser geometry will be implemented at RBI
Single-ion implantation in the low energy (<20 keV) regime available for TAIn the low energy ion range (<20 keV), where the high spatial resolution (<20 nm), can be obtained using Focused Ion Beam tech-nology, efficiency of single ion detection will be improved and tested using new secondary ion detection systems (SUR, IONOPTIKA) and using highly charged ions (HZDR), becoming available for TA.
User Selection Panel installedAt the kick-off meeting a User Selection Panel is installed
High-intensity proton beam with 300 nm spot sizeEuropean users are provided with stateofthe art ion beams constantly being upgraded following the pace of international progress in this field Smaller spot size is generally beneficial but can more easily be achieved for lighter ions protons and low intensities For intense proton beams typically used for PIXE imaging with micrometer resolution the spot size will be reduced to the level of 300 nm
Magnetic spectrometer with Si 128-strip detector for RBS analysis with isotopic mass resolution and nanometer depth resolution available for TA at KULHigh depth resolution RBS will be developed using a magnetic spectrometer combined with a Si strip detector
Virtual spring school 2021 arranged by ISTIn order to boost knowledge on the potential of ion beams four annual Summer Schools will be organized
Technology Transfer Workshop heldIMEC has a longstanding experience in dealing with industry and will consequently organize one central Technology Transfer Workshop that will also discuss the industrial needs in the next decade and include relevant stakeholders and members of the external advisory board During this workshop knowledge will be exchanged the newly hired as well as the experienced Innovation Managers will report on their activities and the commercial enterprises participating in RADIATE ie CAEN IONOPTIKA Ionplus and Orsay Physics will present their view of industrial applications of ion beam technology
New AMS isotopes 135Cs and 90Sr, using ion cooling, available for TAIon cooling technology has tremendous untapped potential as a solution for various current limitations of ion beam techniques eg to increase sensitivity and applicability of AMS and the reliability of ultralow energy ion implantation In an ion cooler beams are electrostatically decelerated and cooled in a buffer gas Although the technology is well established at radioactive ion beam facilities dedicated to experimental nuclear physics broader application in ion beam analysis IBA and modification of materials is still in its infancy and no commercial provider exists An ion cooler has recently been developed at UW for AMS applications based on IonLaser Interaction Mass Spectrometry The device is used to decelerate negative ions which greatly increases the interaction time with a laser beam up to few milliseconds required for isobar separation By significantly increasing sensitivity this approach has the potential to more than double the number of ultratrace isotopes available to AMS users boosting numerous new application fields and attracting new user communities The exploratory prototype shows good results and so far was commissioned for 36Cl a wellestablished AMS isotope Methods for new isotopes 135Cs and 90Sr will be developed and will become available for TA within the project duration
Report on deep learning approaches to analyse complex RBS/EBS spectraDeep learning algorithms find widespread use in various fields where modelling algorithms are unsuitable In the domain of ion beam analysis and ion beam modification of materials we have identified two fields where these artificial intelligence approaches will particularly enhance the performance of ion beam methods One field of application is to solve the inverse problem for Rutherford backscattering spectrometry RBS where one has to solve the ambiguity of elemental and depth information mixed together in a single energy spectrum of backscattered particles These data may be supported by multiple technique approach where additional information is obtained from complementary analysis techniques KUL SUR By training the system with the large set of already measured and wellknown samples one can expect the evaluation of new measured energy spectra by the deep learning algorithms This will allow an easier analysis of energy spectra even by users that are not as experienced in data evaluation Using advanced learning methods and network architectures as well as by simultaneously combining spectra from multiple detectors WP21 T223 this approach will be implemented for more challenging measurements eg where signals overlap where the spectra are very noisy due to a low count rate or where the samples exhibit extreme roughness Finally we aim at implementing such networks in elastic backscattering spectrometry EBS where the contribution of nonelastic scattering events makes the operatorbased spectrum analysis very tedious and timeconsuming KUL JYU IST SUR
At least 8 guest researchers have spent at least 3 months at RADIATE partner labsBy the end of RADIATE at least 8 guest researchers holding a permanent position in European or Associated Countries which are not directly involved in RADIATE should have spent at least 3 months at RADIATE partner labs
Polycapillary-WDS detection system for external microbeam available for TAPolycapillary xray optics will be combined with flat crystal diffraction JSI for inair microPIXE
41Ca measurements available for TABased on the strong expertise in sample preparation at HZDR and UBW an efficient routine process to prepare CaF2 sputter samples for the production of CaH3 beams will be established so that 41Ca AMS can be made available for TA
Summer school 2019 in FranceIn order to boost knowledge on the potential of ion beams four annual Summer Schools will be organized.
First issue of RADIATE Reports seriesThe first issue of the RADIATE Report Series is published on the Ion Beam Portal. The RADIATE Report Series is open access consisting of quality-controlled reports of great practical value but not suited for publication in international journals, such as equipment progress reports, laboratory or instrument descriptions, feasibility studies, or practical notes, is set up.
Report summarizing the experimental conditions under which >99% efficiency for single ion hit detec-tion can be obtainedThe outcome of the developments and tests carried out in terms of efficiency for single ion hit detection under different experimental conditions ion species ion energy detection system will be compiled in a report
Spot sizes of 100 nm / 1000 nm for low / high intensity heavy-ion beams available for TATo satisfy the increasing user demand for heavy ion beams with small spot sizes the developments will be pushed towards spot sizes around 100 nm and below 1000 nm for low and highintensity beams respectively
Appropriate changes in the proposal submission and handling procedures will be applied based on the feedback from the USP during the Midterm Meeting and the TA quality assessment reports
Open access to data taken in user campaigns via the Ion Beam Web Portal according to the Data Management PlanIn progressing towards a sustainable einfrastructure publication and data repositories will be established by the consortium according to the Data Management Plan with the Ion Beam Web Portal providing open access to these data
TRI3DYN made accessible via the Ion Beam Web PortalTRI3DYN has been developed as a 3D extension of TRIDYN, and will be further developed to obtain robust, generally applicable codes that can be used by non-experts. Together with the codes, common input and output data structures, user manuals and tutorials will be developed and made available via the Ion Beam Web Portal
Simulation and data evaluation software adapted for use via Web PortalRADIATE will agree on a common extended IBA data format during the first year of the project Simulation and data evaluation software will be correspondingly adapted for use via the Ion Beam Web Portal
Modified molecular dynamics software made accessible via the Ion Beam Web PortalModified molecular dynamics software will be further developed to obtain robust generally applicable codes that can be used by nonexperts Together with the codes common input and output data structures user manuals and tutorials will be developed and made available via the Ion Beam Web Portal
Two ion beam video clips for a general audience produced and on-lineDissemination includes education and outreach to the general public. To tackle this challenge a series of short Ion Beam Video Clips explaining the benefits of ion beam technology to a general audience will be produced and made available.
Upgraded Proposal Submission, Evaluation and Handling system operative via Ion Beam Web PortalThe initially set up proposal submission and evaluation website will be amended and upgraded.
Data Management and Archiving system setupResearch data and results will be appropriately archived on repositories at the facilities where they have been generated
Proposal submission, evaluation and handling system available onlineInitial version of common proposal submission, evaluation and handling system is made available to users on the Ion Beam Web Portal
Alumni Network for interaction with industry established on Ion Beam Web PortalOn the long term the interaction between industry and the ion beam facilities will be solidified by personal involvement. Alumni from the ion beam facilities will be employed at different companies and will spread the knowledge of ion beam technology. RADIATE will keep track of them in a dedicated Alumni Network in order to enhance the two-way knowledge transfer between company and ion beam facilities.
Ion beam simulation and data analysis software accessible via the Ion Beam Web PortalIon beam simulation software for ion beam transport and tuning, ion irradiation as well as for data analysis is made available to users online
First technology transfer success stories by Innovation Managers published on Ion Beam Web PortalInnovation managers will write short success stories of their technology transfer activities which will be published as a dissemination action on the Ion Beam Web Portal
Setup of user and JRA publication records on the Ion Beam Web PortalThe publication outcome from TA users and JRA activities will be regularly monitored by the NA Leader, and publication statistics will be made available on the Web Portal
Ion optics and related software made available in Ion Optics Pool via Ion Beam Web PortalSince ion beam optics is a crucial, common component of these developments, an Ion Optics Pool of expertise will be established within RADIATE and centralize and further develop the expertise on ion optics hardware and on state-of-the-art software for ion optics simulations (COMSOL, WinTRAX and SIMION), as well as on related fields of relevance (electronics, vacuum, molecular gas dynamics, mechanical design, etc.). The findings will be made available on the Ion Beam Web Portal.
Guest Researcher and Twinning Program established and announced on Ion Beam Web PortalGuest Researcher and Twinning Program is going to be established and announced on the Ion Beam Web Portal. The promotion of ion beam technology and ion beam use to the next generation of scientist is a central goal of RADIATE. In particular scientists from countries without national ion beam facilities are addressed by the dedicated activities. Likewise, a Twinning Program is set up to enable unexperienced potential users to participate in an experimental campaign of an established user group.
Development of software package to combine and analyse a large set of RBS spectra originating from a multi- or segmented detector
Provision of min. 1100 hrs of trans-national access to MLL via UNI BWMA minimum of 1100 hrs of transnational access to MLL via UNI BWM will be provided
The initially set up Data Management Plan will be updated throughout the project A first update will be presented in month 24
Last update of Data Management PlanThe initially set up Data Management Plan will be updated throughout the project
Publications
Auteurs:
Judith Reindl, P. Kundrat, S. Girst, M. Sammer, B. Schwarz & G. Dollinger
Publié dans:
Scientific Reports, 2022, ISSN 2045-2322
Éditeur:
Nature Publishing Group
DOI:
10.1038/s41598-022-05413-6
Auteurs:
Nathan Cassidy, Paul Blenkinsopp, Ian Brown, Richard J. Curry, Ben N. Murdin, Roger Webb, David Cox
Publié dans:
Physica Status Solidi A, Numéro volume 218 Numéro 1, 2020, Page(s) 2000237 pages 1-6, ISSN 1862-6319
Éditeur:
Wiley
DOI:
10.1002/pssa.202000237
Auteurs:
Luka Jeromel, Nina Ogrinc, Zdravko Siketić, Primož Vavpetič, Zdravko Rupnik, Klemen Bučar, Boštjan Jenčič, Mitja Kelemen, Matjaž Vencelj, Katarina Vogel-Mikuš,J anez Kovač, Ron M. A. Heeren, Bryn Flinders, Eva Cuypers, Žiga Barba , Primož Pelicon
Publié dans:
PLOS ONE, 2022, ISSN 1932-6203
Éditeur:
Public Library of Science
DOI:
10.1371/journal.pone.0263338
Auteurs:
Merchel, S.; Braucher, R.; Lachner, J.; Rugel, G.
Publié dans:
MethodsX, Numéro 8, 2021, Page(s) 101486, ISSN 2215-0161
Éditeur:
Elsevier
DOI:
10.1016/j.mex.2021.101486
Auteurs:
Chiari, M.; Barone, S.; Bombini, A.; Calzolai, G.; Carraresi, L.; Castelli, L.; Czelusniak, C.; Fedi, M. E.; Gelli, N.; Giambi, F.; Giardi, F.; Giuntini, L.; Lagomarsino, S.; Liccioli, L.; Lucarelli, F.; Manetti, M.; Massi, M.; Mazzinghi, A.; Nava, S.; Ottanelli, P.; Sciortino, S.; Ruberto, C.; Sodi, L.; Taccetti, F.; Mandò, P. A.
Publié dans:
European Physical Journal plus, Numéro 136, 2021, ISSN 2190-5444
Éditeur:
Springer Science + Business Media
DOI:
10.1140/epjp/s13360-021-01411-1
Auteurs:
Z. Tan, J. de Rojas, S. Martins, A. Lopeandia, L. Abad, A. Quintana, J. Salguero, M. Cialone, J. Herrero-Martín, J. Meersschaut, A. Vantomme, J. L. Costa-Krämer, J. Sort and E. Menéndez
Publié dans:
Materials Horizons, Numéro 10, 2023, Page(s) 88-96, ISSN 2051-6347
Éditeur:
RSC
DOI:
10.1039/d2mh01087a
Auteurs:
Lachner, J.; Martschini, M.; Kalb, A.; Kern, M.; Marchhart, O.; Plasser, F.; Priller, A.; Steier, P.; Wieser, A.; Golser, R.
Publié dans:
Int. J. Mass Spectrom., Numéro 465, 2021, Page(s) 116576, ISSN 1387-3806
Éditeur:
Elsevier BV
DOI:
10.1016/j.ijms.2021.116576
Auteurs:
Martschini, M., Lachner, J., Hain, K., Kern, M., Marchhart, O., Pitters, J., Priller, A., Steier, P., Wiederin, A., Wieser, A., Golser, R.
Publié dans:
Radiocarbon, Numéro First View, 2021, Page(s) 1-14, ISSN 0033-8222
Éditeur:
University of Arizona
DOI:
10.1017/rdc.2021.73
Auteurs:
M. Rocchini, M. Chiari, E. Pasquali, A. Nannini, K. Hadynska-Klęk, P. Sona, D. Bazzacco, G. Benzoni, F. Camera, C. Czelusniak, D.T. Doherty, A. Goasduff, P.R. John, M. Komorowska, N. Marchini, M. Matejska-Minda, B. Melon, D. Mengoni, P.J. Napiorkowski, M. Ottanelli, A. Perego, F. Recchia, M. Siciliano, L. Sottili, D. Testov, J.J. Valiente-Doblon, K. Wrzosek-Lipska, M. Zielinska
Publié dans:
Nuclear Instruments and Methods in Physics Research B, Numéro 486, 2021, Page(s) 68-72, ISSN 0168-583X
Éditeur:
Elsevier BV
DOI:
10.1016/j.nimb.2020.09.021
Auteurs:
K. Fenclová, T. Prášek, M. Němec, M. Christl, P. Gautschi, C. Vockenhuber, J. Tecl
Publié dans:
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, Numéro 503, 2021, Page(s) 45-52, ISSN 0168-583X
Éditeur:
Elsevier BV
DOI:
10.1016/j.nimb.2021.07.008
Auteurs:
Jannis Schauer, Hans-Peter Wieser, Julie Lascaud, Yuanhui Huang, Marie Vidal, Joel Herault, Vasilis Ntziachristos, Günther Dollinger and Katia Parodi
Publié dans:
Physics in Medicine & Biology, 2023, ISSN 0031-9155
Éditeur:
Institute of Physics Publishing
DOI:
10.1088/1361-6560/acd834
Auteurs:
Matthias Sammer, Aikaterini Rousseti, Stefanie Girst, Judith Reindl and Günther Dollinger
Publié dans:
Cancers, 2022, ISSN 2072-6694
Éditeur:
Multidisciplinary Digital Publishing Institute (MDPI)
DOI:
10.3390/cancers14205162
Auteurs:
Malte Brammerloh, Markus Morawski, Isabel Friedrich, Tilo Reinert, Charlotte Lange, Primož Pelicon, Primož Vavpetič, Steffen Jankuhn, Carsten Jäger, Anneke Alkemade, Rawien Balesar, Kerrin Pine, Filippos Gavriilidis, Robert Trampel, Enrico Reimer, Thomas Arendt, Nikolaus Weiskopf, Evgeniya Kirilina
Publié dans:
NeuroImage, 2021, ISSN 1053-8119
Éditeur:
Academic Press
DOI:
10.1016/j.neuroimage.2021.118255
Auteurs:
Schiffer, M., Machhart, O., Priller, A., Herb, S., Hackenberg, G., Heinze, S., Martschini, M., Strub, E., Dunai, T., Golser, R., Dewald, A.
Publié dans:
Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, Numéro 528, 2022, Page(s) 27-33, ISSN 0168-583X
Éditeur:
Elsevier BV
DOI:
10.1016/j.nimb.2022.07.010
Auteurs:
Nicole Matejka, Judith Reindl
Publié dans:
Frontiers in Oncology, Numéro 10, 2020, Page(s) 1691, ISSN 2234-943X
Éditeur:
Frontiers Media S. A.
DOI:
10.3389/fonc.2020.01691
Auteurs:
Jun Yang, Amin Bahrami, Xingwei Ding, Panpan Zhao, Shiyang He, Sebastian Lehmann, Mikko Laitinen, Jaakko Julin, Mikko Kivekäs, Timo Sajavaara, Kornelius Nielsch
Publié dans:
Advanced Electronic Materials, Numéro 8, 2022, Page(s) 2101334, ISSN 2199-160X
Éditeur:
Wiley-VCH Verlag
DOI:
10.1002/aelm.202101334
Auteurs:
Marko Petric, Ava Rajh, Alen Vizintin, Sara Drvarič Talian, Robert Dominko and Matjaž Kavčič
Publié dans:
Chemical Communications, Numéro 57, 2021, Page(s) 7573-7576, ISSN 1359-7345
Éditeur:
Royal Society of Chemistry
DOI:
10.1039/d1cc03023j
Auteurs:
Niels Claessens, Zamran Zahoor Khan, Negin Rahnemai Haghighi, Annelies Delabie, André Vantomme, Wilfried Vandervorst and Johan Meersschaut
Publié dans:
Scientific Reports, Numéro 12, 2022, Page(s) 17770, ISSN 2045-2322
Éditeur:
Nature Publishing Group
DOI:
10.1038/s41598-022-22645-8
Auteurs:
Emilio Corte, Greta Andrini, Elena Nieto Hernández, Vanna Pugliese, Angelo Costa, Goele Magchiels, Janni Moens, Malven Tunhuma, Renan Villarreal, Lino M.C. Pereira, André Vantomme, Joao Guilherme Correia, Ettore Bernardi, Paolo Traina, Ivo Pietro Degiovanni, Ekaterina Moreva, Marco Genovese, Sviatoslav Ditalia Tchernij, Paolo Olivero, Ulrich Wahl and Jacopo Forneris
Publié dans:
ACS Photonics, Numéro 10, 2023, Page(s) 101-110, ISSN 2330-4022
Éditeur:
American Chemical Society
DOI:
10.1021/acsphotonics.2c01130
Auteurs:
Amir Hossein Navidi Kashani, Stanislav Mráz, Damian M. Holzapfel, Marcus Hans, Lukas Löfler, Pavel Ondračka, Daniel Primetzhofer, Jochen M.Schneider
Publié dans:
Surface and Coatings Technology, 2022, ISSN 0257-8972
Éditeur:
Elsevier BV
DOI:
10.1016/j.surfcoat.2022.128190
Auteurs:
D. Verheij, M. Peres, S. Cardoso, L. C. Alves, E. Alves, C. Durand, J. Eymery, J. Fernandes, K. Lorenz
Publié dans:
Applied Physics Letters, Numéro 118, 2021, Page(s) 193501, ISSN 0003-6951
Éditeur:
American Institute of Physics
DOI:
10.1063/5.0045050
Auteurs:
Wieser, A., Lachner, J., Martschini, M., Zok, D., Priller, A., Steier, P., Golser, R.
Publié dans:
Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, Numéro 538, 2023, Page(s) 36-40, ISSN 0168-583X
Éditeur:
Elsevier BV
DOI:
10.1016/j.nimb.2023.02.013
Auteurs:
Harry Scherthan, Stephanie-QuintaWagner, Jan Grundhöfer, Nicole Matejka, Jessica Müller, Steffen Müller, Sarah Rudigkeit, Matthias Sammer, Sarah Schoof, Matthias Port and Judith Reindl
Publié dans:
Cancers, 2022, ISSN 2072-6694
Éditeur:
Multidisciplinary Digital Publishing Institute (MDPI)
DOI:
10.3390/cancers14061545
Auteurs:
Brajković, Marko; Bogdanović Radović, Ivančica; Barac, Marko; Cosic, Donny Domagoj; Siketić, Zdravko
Publié dans:
Journal of the American Society for Mass Spectrometry, Numéro 32, 2021, Page(s) 2567-2572, ISSN 1879-1123
Éditeur:
ACS Publications
DOI:
10.1021/jasms.1c00200
Auteurs:
He, S., Bahrami, A., Zhang, X., Julin, J., Laitinen, M., & Nielsch, K.
Publié dans:
Materials Today Chemistry, Numéro 32, 2023, Page(s) 101650, ISSN 2468-5194
Éditeur:
Elsevier BV
DOI:
10.1016/j.mtchem.2023.101650
Auteurs:
Chiara I. Paleari; Florian Mekhaldi; Florian Adolphi; Marcus Christl; Christof Vockenhuber; Philip Gautschi; Jürg Beer; Nicolas Brehm; Tobias Erhardt; Hans-Arno Synal; Lukas Wacker; Frank Wilhelms; Raimund Muscheler
Publié dans:
Nature Communications, Vol 13, Iss 1, Pp 1-9 (2022), Numéro 12, 2022, ISSN 2041-1723
Éditeur:
Nature Publishing Group
DOI:
10.1038/s41467-021-27891-4
Auteurs:
M. Verlinde, S. Kraemer, J. Moens, K. Chrysalidis, J. G. Correia, S. Cottenier, H. De Witte, D. V. Fedorov, V. N. Fedosseev, R. Ferrer, L. M. Fraile, S. Geldhof, C. A. Granados, M. Laatiaoui, T. A. L. Lima, P.-C. Lin, V. Manea, B. A. Marsh, I. Moore, L. M. C. Pereira, S. Raeder, P. Van den Bergh, P. Van Duppen, A. Vantomme, E. Verstraelen, U. Wahl, S. G. Wilkins
Publié dans:
Physical Review C, Numéro 100/2, 2019, ISSN 2469-9985
Éditeur:
American Physical Society
DOI:
10.1103/physrevc.100.024315
Auteurs:
Gerd Datzmann, Matthias Sammer, Stefanie Girst, Michael Mayerhofer,
Günther Dollinger and Judith Reindl
Publié dans:
Frontiers in Physics, 2020, ISSN 2296-424X
Éditeur:
Frontiers in Physics
DOI:
10.3389/fphy.2020.568206
Auteurs:
Marko Brajković, Marko Barac, Iva Bogdanović Radović, Zdravko Siketić
Publié dans:
Journal of the American Society for Mass Spectrometry, Numéro 31/7, 2020, Page(s) 1518-1524, ISSN 1044-0305
Éditeur:
Elsevier BV
DOI:
10.1021/jasms.0c00080
Auteurs:
Ruszkiczay-Rüdiger, Z., Neuhuber, S., Braucher, R., Lachner, J., Steier, P., Wieser, A., Braun, M., ASTER Team
Publié dans:
Journal of Radioanalytical and Nuclear Chemistry, Numéro 329, 2021, Page(s) 1523-1536, ISSN 0236-5731
Éditeur:
Akademiai Kiado
DOI:
10.1007/s10967-021-07916-4
Auteurs:
René Heller, Nico Klingner, Niels Claessens, Clement Merckling, and Johan Meersschaut
Publié dans:
Journal of Applied Physics, Numéro 132, 2022, Page(s) 165302, ISSN 0021-8979
Éditeur:
American Institute of Physics
DOI:
10.1063/5.0096497
Auteurs:
Hain, K., Adler, S., Gülce, F., Martschini, M., Pitters, J., Golser, R.
Publié dans:
Nuclear Instruments and Methods in Physics Research, Section B: Beam Interactions with Materials and Atoms, Numéro 531, 2022, ISSN 0168-583X
Éditeur:
Elsevier BV
DOI:
10.1016/j.nimb.2022.09.016
Auteurs:
Matjaž Kavčič; Marko Petric; Marko Petric; Ava Rajh; Ava Rajh; Kristina Isaković; Alen Vizintin; Sara Drvarič Talian; Robert Dominko
Publié dans:
ACS Applied Energy Materials, Numéro 4, 2021, Page(s) 2357-2364, ISSN 2574-0962
Éditeur:
ACS
DOI:
10.1021/acsaem.0c02878
Auteurs:
Rok Podlipec; E. Punzón-Quijorna; Luka Pirker; Mitja Kelemen; Primož Vavpetič; Rajko Kavalar; Gregor Hlawacek; Janez Štrancar; Primož Pelicon; Samo K. Fokter
Publié dans:
Materials 14(2021), 3048, 2021, ISSN 1996-1944
Éditeur:
MDPI Open Access Publishing
DOI:
10.3390/ma14113048
Auteurs:
Barac, Marko; Filko, Andrijana; Siketić, Zdravko; Brajković, Marko; Ledić, Andrea; Bogdanović Radović, Ivančica
Publié dans:
Forensic Science International, Numéro 331, 2022, Page(s) 111136, ISSN 0379-0738
Éditeur:
Elsevier BV
DOI:
10.1016/j.forsciint.2021.111136
Auteurs:
Niels Claessens, Annelies Delabie, André Vantomme, Wilfried Vandervorst and Johan Meersschaut
Publié dans:
Nuclear Instruments and Methods B, Numéro 540, 2023, Page(s) 174-181, ISSN 1872-9584
Éditeur:
Elsevier
DOI:
10.1016/j.nimb.2023.04.036
Auteurs:
A Bahr, T Glechner, A Grimmer, T Wojcik, P Kutrowatz, M Podsednik, A Limbeck, M Heller, J Ramm, O Hunold, S Kolozsvári, P Polcik, E Ntemou, D Primetzhofer, P Felfer, H Riedl
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Surface and Coatings Technology, Numéro 468, 2023, Page(s) 129733, ISSN 0257-8972
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