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Simulations of complex electron paramagnetic resonance spectra for radiation-induced defect centres in advanced ceramic breeder pebbles
Nuclear Materials and Energy, 2023 Advanced ceramic breeder (ACB) pebbles consisting of lithium orthosilicate (Li4SiO4) and the strengthening phase lithium metatitanate (Li2TiO3) are accepted as the European Union’s reference solid-state material for tritium breeding in thermonuclear fusion reactors.Zarins, Arturs, Antuzevics, Andris, Kizane, Gunta, Leys, Julia M., Knitter, Regina +4 moreopenaire +6 more sourcesHyperfine interactions of paramagnetic radiation-induced defect centres in advanced ceramic breeder pebbles
Nuclear Materials and EnergyAdvanced ceramic breeder (ACB) pebbles consisting of 65 mol% lithium orthosilicate (Li4SiO4) and 35 mol% lithium metatitanate (Li2TiO3) are developed for tritium breeding in the European Union’s (EU) helium cooled pebble bed (HCPB) breeder blanket concept of the demonstration fusion power plant (DEMO).Antuzevics, Andris, Zarins, Arturs, Cirulis, Jekabs, Fedotovs, Andris, Ansone, Anna, Rzepna, Magdalena, Leys, Julia M., Knitter, Regina +7 moreopenaire +6 more sourcesContinuous-wave room-temperature diamond maser [PDF]
, 2017 The maser, older sibling of the laser, has been confined to relative
obscurity due to its reliance on cryogenic refrigeration and high-vacuum
systems.A Gruber, A Jarmola, A Siegman, AL Schawlow, B Yavkin, Christopher W. M. Kay, E Salvadori, Enrico Salvadori, F Dimer, H Kraus, HJ Carmichael, J Breeze, J Loubser, J Maze, J Taylor, JD Breeze, Jonathan D. Breeze, Juna Sathian, L Childress, L Jin, L Robledo, M Oxborrow, M Tavis, MW Doherty, N Aslam, N Manson, N Poklonski, N Poklonski, Neil McN. Alford, P Sorokin, S Takahashi, T-L Wee, W Smith +32 morecore +3 more sourcesGiant defect emission enhancement from ZnO nanowires through desulfurization process. [PDF]
, 2020 Zinc oxide (ZnO) is a stable, direct bandgap semiconductor emitting in the UV with a multitude of technical applications. It is well known that ZnO emission can be shifted into the green for visible light applications through the introduction of defects. Cesar, Clotaire Chevalier, Lerondel, Gilles, Lusson, Alain, Nomenyo, Komla, Schwartzberg, Adam, Woon, Wei-Yen, Yen, Chun-Chieh, Zhou, Junze +7 morecore +5 more sourcesRadiation hardness qualification of PbWO4 scintillation crystals for the CMS Electromagnetic Calorimeter [PDF]
, 2009 This is the Pre-print version of the Article. The official published version can be accessed from the link below - Copyright @ 2010 IOPEnsuring the radiation hardness of PbWO4 crystals was one of the main priorities during the construction of the ...A Askew, A Bartoloni, A Borisevitch, A Bornheim, A Cecilia, A David, A De Benedetti, A Dolgopolov, A Elliott-Peisert, A Fedorov, A Ghezzi, A Givernaud, A Go, A Honma, A Inyakin, A K Mohanty, A Kyriakis, A Ledovskoy, A Markou, A Nardulli, A Nikitenko, A Palma, A Papadakis, A Pullia, A Rosowsky, A Singovsky, A Sirunyan, A Topkar, A Uzunian, A Zabi, A. Annenkov ., B Betev, B C Choudhary, B Camanzi, B Cox, B Fabbro, B Gobbo, B Heltsley, B Ille, B W Kennedy, C Baty, C Bernet, C Biino, C Charlot, C H Shepherd-Themistocleous, C Jessop, C M Kuo, C Marchica, C Markou, C Mavrommatis, C Rogan, C Rovelli, C Seez, C Siamitros, C Thiebaux, C Timlin, CMS collaboration, CMS collaboration, D Andelin, D Bandurin, D Barney, D Del Re, D Denegri, D Dutta, D Franci, D G Cussans, D G Phillips, D J A Cockerill, D Jovanovic, D Krpic, D Loukas, D Maletic, D R Da Silva Di Calafiori, D Renker, D Sillou, D Wardrope, E A Chen, E Auffray, E Di Marco, E Locci, E Longo, E Petrakou, E. Auffray, E. Auffray, E. Auffray ., F A Triantis, F Cavallari, F Cossutti, F Ferri, F Moortgat, F Nessi-Tedaldi, F Pauss, F Ptochos, F Stöckli, F X Gentit, G Daskalakis, G Della Ricca, G Dissertori, G Drobychev, G Franzoni, G Hamel de Monchenault, G Organtini, G W S Hou, H B Newman, H El Mamouni, H F Heath, I Anicin, I Dafinei, I Evangelou, I Papadakis, I Papadopoulos, I Puljak, I Yaselli, I. Dafinei, I. Dafinei, I. Dafinei ., J Blaha, J Bourotte, J Descamps, J Fay, J G Shiu, J H Williams, J Haupt, J L Faure, J Malclès, J Nash, J Puzovic, J R Patterson, J Rander, J Silva, J Swain, J Varela, J Veverka, J Weng, J Zhang, J-P Peigneux, J. Sykora, K Deiters, K Freudenreich, K Kaadze, K Theofilatos, K Ueno, K W Bell, K Zhu, L Djambazov, L Dobrzynski, L M Barone, L Pant, L Sala, L Y Zhang, M Balazs, M Besancon, M Buehler, M Dejardin, M Diemoz, M Dittmar, M Djordjevic, M Dzelalija, M Gataullin, M Haguenauer, M Hansen, M Huhtinen, M J Ryan, M Korjik, M Lebeau, M Lethuillier, M M Obertino, M Malberti, M Marone, M Paganoni, M Ronquest, M Schneegans, M Takahashi, M Titov, M W Arenton, M Wang, M Weber, M. Nikl ., N Almeida, N Cartiglia, N Godinovic, N Golubev, N Grant, N Krasnikov, N Manthos, N Marinelli, N Pastrone, N Redaelli, N Tyurin, O Missevitch, O Teller, P A Razis, P Adzic, P Bloch, P Busson, P Chang, P D Luckey, P Depasse, P Govoni, P Gras, P Jarry, P Kokkas, P Kyberd, P Lecomte, P Lecoq, P Meridiani, P Milenovic, P Miné, P Musella, P Nedelec, P Negri, P Paganini, P Parracho, P Piroué, P R Hobson, P Ribeiro, P Rumerio, P Sharp, P Shukla, P Silva, P Verrecchia, P. Bohacek ., P. Lecoq, Q Ingram, R Arcidiacono, R Beuselinck, R Chipaux, R Hirosky, R K Choudhury, R K Shivpuri, R M Brown, R Paramatti, R Rusack, R Salerno, R Y Zhu, R Yohay, R. Chipaux, R. Chipaux, R. Chipaux ., S Argiro, S Baccaro, S Baffioni, S Beauceron, S Conetti, S Cooper, S Drndarevic, S Ganjour, S Gascon, S Gninenko, S K Kataria, S Kailas, S Ragazzi, S Rahatlou, S Reucroft, S Troshin, S V Rusakov, S W Lin, S Zelepoukine, T Camporesi, T Kolberg, T Orimoto, T Punz, T Tabarelli de Fatis, T Virdee, The CMS Electromagnetic Calorimeter Group, V J Smith, V Kachanov, V Litvine, V Matveev, V Tancini, V Timciuc, W Funk, W Hintz, W Lin, W Lustermann, W T Chen, Y H Chang, Y Hsiung, Y Kubota, Y Ma, Y Maravin, Y Musienko, Y Sirois, Y Yang, Z Antunovic, Z Chen +285 morecore +6 more sourcesSpin properties of dense near-surface ensembles of nitrogen-vacancy
centres in diamond [PDF]
, 2018 We present a study of the spin properties of dense layers of near-surface
nitrogen-vacancy (NV) centres in diamond created by nitrogen ion implantation.Broadway, D. A., de Gille, R. W., Dontschuk, N., Hall, L. T., Hollenberg, L. C. L., Lillie, S. E., McCoey, J. M., Simpson, D. A., Stacey, A., Teraji, T., Tetienne, J. -P. +10 morecore +2 more sourcesMagnetometry with nitrogen-vacancy defects in diamond [PDF]
, 2014 The isolated electronic spin system of the Nitrogen-Vacancy (NV) centre in
diamond offers unique possibilities to be employed as a nanoscale sensor for
detection and imaging of weak magnetic fields.Hingant, T., Jacques, V., Maletinsky, P., Roch, J. -F., Rondin, L., Tetienne, J. -P. +5 morecore +3 more sourcesThermoluminescence of zircon: a kinetic model [PDF]
, 2003 The mineral zircon, ZrSiO4, belongs to a class of promising materials for geochronometry by means of thermoluminescence (TL) dating. The development of a reliable and reproducible method for TL dating with zircon requires detailed knowledge of the ...A A Turkin, Aitken M J, Bøtter-Jensen L, D I Vainshtein, Fain J, Gear C W, H J van Es, H W den Hartog, Hairer E, Horowitz Y S (ed), Huntley D J, Iacconi P, Kahaner D, Laruhin M A, McKeever S W S, Murray A S, Nerurkar A P, Olley J M, Press W H, Ríos S, Smith B W, Sutton S R, Sze S M, Templer R H, Turkin A A, Turkin A A, van Es H J, van Es H J, Waite T R, Weber W J, Wintle A G, Wintle A G +31 morecore +2 more sources