1. Ongena, J. (2014). How to shape our future energy supply. In Proceedings of 12th Kudowa Summer School “Towards Fusion Energy”, 9–13 June 2014, Kudowa Zdroj, Poland (p. IL-1). Warsaw: IPPLM. CD Issue.
5. Vandenplas, P. E. (1980). Reflections on the past and future of fusion and plasma physics research. Plasma Phys. Contr. Fusion, 40, 77–85.10.1088/0741-3335/40/8A/007
8. Hurricane, O. A., Callahan, D. A., Casey, D. T., Celliers, P. M., Cerjan, C., Dewald, E. L., Dittrich, T. R., Döppner, T., Hinkel, D. E., Berzak Hopkins, L. F., Kline, J. L., Le Pape, S., Ma, T., MacPhee, A. G., Milovich, J. L., Pak, A., Park, H. -S., Patel, P. K., Remington, B. A., Salmonson, J. D., Springer, P. T., & Tomassini, R. (2014). Fuel gain exceeding unity in an inertially confined fusion implosion. Nature, 506, 343–348. DOI: 10.1038/nature13008.10.1038/nature1300824522535
11. Todd, T. N. (2012). The engineering design of ITER. In Proceedings of 11th Kudowa Summer School “Towards Fusion Energy”, 11–15 June 2012, Kudowa Zdroj, Poland. (p. IL-6), Warsaw: IPPLM. CD Issue.
12. Pinches, S. D. (2014). Physics challenges and status of ITER. In Proceedings of 12th Kudowa Summer School “Towards Fusion Energy”, 9–13 June 2014, Kudowa Zdroj, Poland. (p. IL-6). Warsaw: IPPLM. CD Issue.
14. Todd, T. N. (2014). The technical challenges of DEMO. In Proceedings of 12th Kudowa Summer School “Towards Fusion Energy”, 9–13 June 2014, Kudowa Zdroj, Poland. (p. IL-15). Warsaw: IPPLM. CD Issue.