(en) R. Strehlow, Transverse waves in detonations: Ii. structure and spacing in h2-o2, c2h2-o2, c2h4-o2 and ch4-o2 systems, AIAA Journal, 7, 1969, p.492–49 (résumé [PDF]).
Baptiste Regnery, chap.15 «Enjeux de mise en œuvre des mesures compensatoires: l’exemple du projet ITER», dans Harold Levrel, Nathalie Frascaria-Lacoste, Julien Hay, Gilles Martin, Sylvain Pioch, Restaurer la nature pour atténuer les impacts du développement: Analyse des mesures compensatoires pour la biodiversité, Quæ, 29 juin 2015, (ISBN275922290X et 978-2759222902, lire en ligne).
(en) Mustakimah Mohamed et Nur Diyana Zakuan, «Global Development and Readiness of Nuclear Fusion Technology as the Alternative Source for Clean Energy Supply», sur Sustainability, (ISSN2071-1050, DOI10.3390/su16104089, consulté le ), p.4089.
(en) M. Trtica, J. Savovic, M. Kuzmanovic et D. Rankovic, «Libs Hydrogen Isotopes Detection: Significance in Nuclear/Fusion Technology», Journal of Applied Spectroscopy, vol.90, no6, , p.1318–1324 (ISSN0021-9037 et 1573-8647, DOI10.1007/s10812-024-01669-0).
(en) R. Mével, J. Sabard, J. Lei et N. Chaumeix, «Fundamental combustion properties of oxygen enriched hydrogen/air mixtures relevant to safety analysis: Experimental and simulation study», International Journal of Hydrogen Energy, vol.41, no16, , p.6905–6916 (ISSN0360-3199, DOI10.1016/j.ijhydene.2016.03.026, lire en ligne, consulté le ).
(en) F. Crisanti, R. Albanese, G. Granucci et R. Martone, «The Divertor Tokamak Test facility proposal: Physical requirements and reference design», Nuclear Materials and Energy, proceedings of the 22nd International Conference on Plasma Surface Interactions 2016, 22nd SI, vol.12, , p.1330–1335 (ISSN2352-1791, DOI10.1016/j.nme.2017.05.008, lire en ligne, consulté le ).
(en) G. Cambi, D.G. Cepraga, M. Frisoni, F. Carloni, Neutron irradiation effects on the ITER-EDA and ITER-RC firstwall/blanket materials], 330-333, 1999 DOI10.1109/FUSION.1999.849850.
(en) R. Mével, J. Sabard, J. Lei et N. Chaumeix, «Fundamental combustion properties of oxygen enriched hydrogen/air mixtures relevant to safety analysis: Experimental and simulation study», International Journal of Hydrogen Energy, vol.41, no16, , p.6905–6916 (ISSN0360-3199, DOI10.1016/j.ijhydene.2016.03.026, lire en ligne, consulté le ).
(en) Pitts, R. A., Kukushkin, A., Loarte, A., Martin, A., Merola, M., Kessel, C. E.... & Shimada, M., Status and physics basis of the ITER divertor, Physica Scripta, 2009(T138), 014001 (résumé).
(en) Mustakimah Mohamed et Nur Diyana Zakuan, «Global Development and Readiness of Nuclear Fusion Technology as the Alternative Source for Clean Energy Supply», sur Sustainability, (ISSN2071-1050, DOI10.3390/su16104089, consulté le ), p.4089.
(en) M. Trtica, J. Savovic, M. Kuzmanovic et D. Rankovic, «Libs Hydrogen Isotopes Detection: Significance in Nuclear/Fusion Technology», Journal of Applied Spectroscopy, vol.90, no6, , p.1318–1324 (ISSN0021-9037 et 1573-8647, DOI10.1007/s10812-024-01669-0).
(en) R. Mével, J. Sabard, J. Lei et N. Chaumeix, «Fundamental combustion properties of oxygen enriched hydrogen/air mixtures relevant to safety analysis: Experimental and simulation study», International Journal of Hydrogen Energy, vol.41, no16, , p.6905–6916 (ISSN0360-3199, DOI10.1016/j.ijhydene.2016.03.026, lire en ligne, consulté le ).
(en) F. Crisanti, R. Albanese, G. Granucci et R. Martone, «The Divertor Tokamak Test facility proposal: Physical requirements and reference design», Nuclear Materials and Energy, proceedings of the 22nd International Conference on Plasma Surface Interactions 2016, 22nd SI, vol.12, , p.1330–1335 (ISSN2352-1791, DOI10.1016/j.nme.2017.05.008, lire en ligne, consulté le ).
«La Russie a envoyé vers la France un des aimants géants prévus pour le programme ITER sur la fusion nucléaire», Le Monde, (lire en ligne, consulté le ).
(en) Davide Castelvecchi et Jeff Tollefson, «US advised to stick with troubled fusion reactor ITER The Department of Energy says the US should fund ITER until 2018, and then re-evaluate its progress», Nature, (lire en ligne).
(en) Pitts, R. A., Bonnin, X., Escourbiac, F., Hirai, T., Gunn, J. P., Kukushkin, A. S.... & De Temmerman, G., Physics basis for the ITER tungsten divertor, Presentation, 23rd International Conference on Plasma Surface Interactions, Princeton, USA, 2018 (résumé [PDF]).
(en) D. Stamps, S. Tiesze, The influence of initial pressure and temperature on hydrogen-air-diluent detonations, Combustion and Flame, 83 (3), 1991, 353–364 (résumé).
(en) N. Lamoureux, N. Djebali-Chaumeix, C. Paillard, Laminar flame velocity for H2-air-He-CO2 mixtures using the spherical bomb method., Experimental Thermal and Fluid Science, 27, 2003, p. 385–339 (résumé).
(en) Merola, M., Escourbiac, F., Raffray, A. R., Chappuis, P., Hirai, T., Gicquel, S.... & Team, B. I. P., Engineering challenges and development of the ITER blanket system and divertor, Fusion Engineering and Design, 96, 2015, 34-41 (résumé).
(en) F. Crisanti, R. Albanese, G. Granucci et R. Martone, «The Divertor Tokamak Test facility proposal: Physical requirements and reference design», Nuclear Materials and Energy, proceedings of the 22nd International Conference on Plasma Surface Interactions 2016, 22nd SI, vol.12, , p.1330–1335 (ISSN2352-1791, DOI10.1016/j.nme.2017.05.008, lire en ligne, consulté le ).
(en) Hirai, T., Panayotis, S., Barabash, V., Amzallag, C., Escourbiac, F., Durocher, A.... & Wirtz, M., Use of tungsten material for the ITER divertor. Nuclear Materials and Energy, 9, 2016, 616-622.
Jean Marcon, «Opposition au réacteur ITER, Jean Marcon gardé à vue... mais regard critique!», Sortir du nucléaire, Réseau Sortir du nucléaire, no39, (lire en ligne).