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Thomas Aarholt
Thomas Aarholt
Verified email at smn.uio.no
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Cited by
Year
Electron microscopy (big and small) data analysis with the open source software package HyperSpy
F de la Peña, T Ostasevicius, VT Fauske, P Burdet, P Jokubauskas, ...
Microscopy and Microanalysis 23 (S1), 214-215, 2017
882017
hyperspy/hyperspy: HyperSpy 1.3
F De La Peña, T Ostasevicius, V Tonaas Fauske, P Burdet, ...
Zenodo, 2017
87*2017
pquinn dls, V
F de la Peña, E Prestat, VT Fauske, P Burdet, J Lähnemann, ...
Migunov, A. Eljarrat, J. Caron, C. Francis, T. Nemoto, T. Poon, S. Mazzucco …, 2022
372022
Understanding Corrosion and Hydrogen Pickup of Zirconium Fuel Cladding Alloys: The Role of Oxide Microstructure
J Hu, B Setiadinata, T Aarholt, A Garner, A Vilalta-Clemente, J Partezana, ...
Porosity, Suboxides, and Second-Phase Particles, Zirconium in the Nuclear …, 2018
302018
hyperspy/hyperspy: Release v1. 6.5
F De La Peña, E Prestat, V Tonaas Fauske, P Burdet, J Lähnemann, ...
Zenodo, 2021
262021
3D-characterization of deuterium distributions in zirconium oxide scale using high-resolution SIMS
K Li, T Aarholt, J Liu, H Hulme, A Garner, M Preuss, S Lozano-Perez, ...
Applied Surface Science 464, 311-320, 2019
262019
Direct observation of conduction band plasmons and the related Burstein-Moss shift in highly doped semiconductors: A STEM-EELS study of Ga-doped ZnO
CS Granerød, SR Bilden, T Aarholt, YF Yao, CC Yang, DC Look, L Vines, ...
Physical Review B 98 (11), 115301, 2018
252018
A multi-technique study of “barrier layer” nano-porosity in Zr oxides during corrosion and hydrogen pickup using (S) TEM, TKD, APT and NanoSIMS
J Hu, T Aarholt, B Setiadinata, K Li, A Garner, S Lozano-Perez, M Moody, ...
Corrosion Science 158, 108109, 2019
242019
Band gap maps beyond the delocalization limit: correlation between optical band gaps and plasmon energies at the nanoscale
W Zhan, V Venkatachalapathy, T Aarholt, AY Kuznetsov, Ø Prytz
Scientific Reports 8 (1), 848, 2018
232018
Characterisation of deuterium distributions in corroded zirconium alloys using high-resolution SIMS imaging
J Liu, K Li, J Sayers, T Aarholt, G He, H Hulme, A Garner, M Preuss, ...
Acta Materialia 200, 581-596, 2020
202020
Hyperspy: Hyperspy 1.1
F De La Peña, T Ostasevicius, V Tonaas Fauske, P Burdet, ...
Zenodo, 2018
19*2018
High resolution characterisation of corrosion and hydrogen pickup of Zr-Nb cladding alloys
J Hu
University of Oxford, 2016
192016
Double perovskite cobaltites integrated in a monolithic and noble metal-free photoelectrochemical device for efficient water splitting
J Zhu, JB Guđmundsdóttir, R Strandbakke, KG Both, T Aarholt, ...
ACS Applied Materials & Interfaces 13 (17), 20313-20325, 2021
182021
On the effect of environmental exposure on dwell fatigue performance of a fine-grained nickel-based superalloy
S Pedrazzini, DJ Child, T Aarholt, C Ball, M Dowd, A Girling, H Cockings, ...
Metallurgical and Materials Transactions A 49, 3908-3922, 2018
142018
HyperSpy 1.6. 1
F de la Pena, E Prestat, VT Fauske, P Burdet, T Furnival, P Jokubauskas, ...
Zenodo, CERN: Meyrin, Switzerland, 2020
132020
hyperspy/hyperspy: Release v1. 7.0
F De La Peña, E Prestat, V Tonaas Fauske, P Burdet, J Lähnemann, ...
Zenodo, 2022
122022
Hyperspy
F de la Peña, T Ostasevicius, VT Fauske, P Burdet, P Jokubauskas, ...
Hyperspy: hyperspy, 1-3, 2017
122017
Facet-engineered TiO 2 nanomaterials reveal the role of water–oxide interactions in surface protonic conduction
X Kang, A Chatzitakis, T Aarholt, X Sun, C Negri, T Norby
Journal of Materials Chemistry A 10 (1), 218-227, 2022
112022
Single-step approach to sensitized luminescence through bulk-embedded organics in crystalline fluorides
PA Hansen, T Zikmund, T Yu, JN Kvalvik, T Aarholt, Ø Prytz, A Meijerink, ...
Communications chemistry 3 (1), 162, 2020
92020
Hyperspy V1. 4
F de la Peña, T Ostasevicius, V Tonaas Fauske, P Burdet, E Prestat, ...
Zenodo, 2018
92018
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