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Publikationer via PURE

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Hasebe, T., Sakuma, N. & Thorbjørnsen, S. (2019). The Normal Distribution Is Freely Self-decomposable. International Mathematics Research Notices, 2019(6), 1758-1787. https://doi.org/10.1093/imrn/rnx171
Andersen, J. E. & Kashaev, R. (2019). The Teichmüller TQFT. I B. Sirakov, P. Ney de Souza & M. Viana (red.), Proceedings of the International Congress Of Mathematicians 2018 (ICM 2018) (Bind 2, s. 2541-2565). World Scientific.
Ito, K. & Skibsted, E. (2019). Time-dependent scattering theory on manifolds. Journal of Functional Analysis, 277(5), 1423-1468. https://doi.org/10.1016/j.jfa.2019.05.016
Madsen, T. B. & Swann, A. F. (2019). Toric geometry of G2-manifolds. Geometry & Topology, 23(7), 3459-3500. https://doi.org/10.2140/gt.2019.23.3459
Nielsen, K. H. (2019). Vegan. Weekendavisen, Sektion 4 (Ideer), 10.
Wray, K. B. (2019). What to make of Mendeleev’s predictions? Foundations of Chemistry: Philosophical, Historical, Educational and Interdisciplinary Studies of Chemistry, 21(2), 139-143. https://doi.org/10.1007/s10698-018-9313-z
Heymann, M. (2019). Wie können wir als Geisteswissenschaftler Studierende der Naturwissenschaften sinnvoll unterrichten? Erfahrungen aus Dänemark. I M. Popplow (red.), Technik- und Wissenschaftsgeschichte in der universitären Lehre: Formate, Adressaten, Konzepte (s. 71-80). KIT Scientific Publishing. https://doi.org/10.5445/KSP/1000091371
Nielsen, K. H. (2018). #. Weekendavisen, Sektion 4 (Ideer), 10.
Schindler, S. (2018). A coherentist conception of ad hoc hypotheses. Studies in History and Philosophy of Science Part A, 67, 54–64. https://doi.org/10.1016/j.shpsa.2017.11.011
Andersen, J. E. & Rasmussen, K. (2018). A Hitchin connection for a large class of families of Kähler structures. I J. Ellegaard Andersen, A. Dancer & O. Garcia-Prada (red.), Geometry and Physics: A Festschrift in Honour of Nigel Hitchin (Bind 1, s. 135-162). Oxford University Press. https://arxiv.org/pdf/1609.01395.pdf
Malusà, A. (2018). A Hitchin connection for the genus-one SL(n,C)-Chern-Simons theory. Poster-session præsenteret på QUANTMOD2, Esch-sur-Alzette, Luxemborg.
Bley, G. A. (2018). A lower bound on the renormalized Nelson model. Journal of Mathematical Physics, 59(6), Artikel 061901. https://doi.org/10.1063/1.5008831
Barndorff-Nielsen, O. E., Benth, F. E. & Veraart, A. (2018). Ambit Stochastics. Springer. Probability Theory and Stochastic Modelling Bind 88 https://doi.org/10.1007/978-3-319-94129-5
Mohany, M., Ashton, N., Harrath, A. H., Nyengaard, J. R., Alomar, S. Y. & Alwasel, S. (2018). A new model for fetal programming: maternal Ramadan-type fasting programs nephrogenesis. Journal of Developmental Origins of Health and Disease, 9(3), 287-298. https://doi.org/10.1017/S204017441700109X
Martin-Nielsen, J. (2018). ‘An Orgy of Hypothesizing’: The Construction of Glaciological Knowledge in Cold War America. I J. Herzberg, C. Kehrt & F. Toma (red.), Ice and Snow in the Cold War: Histories of Extreme Climatic Environments (s. 69-88). Berghahn Books.
Fredrickson, L., Pei, D., Yan, W. & Ye, K. (2018). Argyres-Douglas theories, chiral algebras and wild Hitchin characters. Journal of High Energy Physics, 2018(1), Artikel 150. https://doi.org/10.1007/JHEP01(2018)150
Nielsen, K. H. (2018). Aspergers. Weekendavisen, Sektion 4 (Ideer), 10.
Diaconescu, D.-E., Sheshmani, A. & Yau, S.-T. (2018). Atiyah class and sheaf counting on local Calabi Yau fourfolds. Advances in Mathematics, 368(2020).
Nielsen, K. H. (2018). Biodiversitet. Weekendavisen, Sektion 4 (Ideer), 10.