Sökning: WFRF:(Barbui T) > (2020-2024) > Experimental confir...
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000 | 04128naa a2200901 4500 | |
001 | oai:DiVA.org:uu-510200 | |
003 | SwePub | |
008 | 230825s2022 | |||||||||||000 ||eng| | |
024 | 7 | a https://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-5102002 URI |
024 | 7 | a https://doi.org/10.1088/1741-4326/ac2cf52 DOI |
040 | a (SwePub)uu | |
041 | a engb eng | |
042 | 9 SwePub | |
072 | 7 | a ref2 swepub-contenttype |
072 | 7 | a art2 swepub-publicationtype |
100 | 1 | a Sunn Pedersen, Thomas4 aut |
245 | 1 0 | a Experimental confirmation of efficient island divertor operation and successful neoclassical transport optimization in Wendelstein 7-X |
264 | c 2022-04-29 | |
264 | 1 | b IOP Publishing,c 2022 |
338 | a electronic2 rdacarrier | |
520 | a We present recent highlights from the most recent operation phases of Wendelstein 7-X, the most advanced stellarator in the world. Stable detachment with good particle exhaust, low impurity content, and energy confinement times exceeding 100 ms, have been maintained for tens of seconds. Pellet fueling allows for plasma phases with reduced ion-temperature-gradient turbulence, and during such phases, the overall confinement is so good (energy confinement times often exceeding 200 ms) that the attained density and temperature profiles would not have been possible in less optimized devices, since they would have had neoclassical transport losses exceeding the heating applied in W7-X. This provides proof that the reduction of neoclassical transport through magnetic field optimization is successful. W7-X plasmas generally show good impurity screening and high plasma purity, but there is evidence of longer impurity confinement times during turbulence-suppressed phases. | |
650 | 7 | a NATURVETENSKAPx Fysikx Fusion, plasma och rymdfysik0 (SwePub)103032 hsv//swe |
650 | 7 | a NATURAL SCIENCESx Physical Sciencesx Fusion, Plasma and Space Physics0 (SwePub)103032 hsv//eng |
700 | 1 | a Abramovic, I.4 aut |
700 | 1 | a Agostinetti, P.4 aut |
700 | 1 | a Agredano Torres, M.4 aut |
700 | 1 | a Äkäslompolo, S.4 aut |
700 | 1 | a Alcuson Belloso, J.4 aut |
700 | 1 | a Aleynikov, P.4 aut |
700 | 1 | a Aleynikova, K.4 aut |
700 | 1 | a Alhashimi, M.4 aut |
700 | 1 | a Ali, A.4 aut |
700 | 1 | a Allen, N.4 aut |
700 | 1 | a Alonso, A.4 aut |
700 | 1 | a Anda, G.4 aut |
700 | 1 | a Andreeva, T.4 aut |
700 | 1 | a Angioni, C.4 aut |
700 | 1 | a Arkhipov, A.4 aut |
700 | 1 | a Arnold, A.4 aut |
700 | 1 | a Asad, W.4 aut |
700 | 1 | a Ascasibar, E.4 aut |
700 | 1 | a Aumeunier, M.-H.4 aut |
700 | 1 | a Avramidis, K.4 aut |
700 | 1 | a Aymerich, E.4 aut |
700 | 1 | a Baek, S.-G.4 aut |
700 | 1 | a Bähner, J.4 aut |
700 | 1 | a Baillod, A.4 aut |
700 | 1 | a Balden, M.4 aut |
700 | 1 | a Baldzuhn, J.4 aut |
700 | 1 | a Ballinger, S.4 aut |
700 | 1 | a Banduch, M.4 aut |
700 | 1 | a Bannmann, S.4 aut |
700 | 1 | a Banon Navarro, A.4 aut |
700 | 1 | a Bañón Navarro, A.4 aut |
700 | 1 | a Barbui, T.4 aut |
700 | 1 | a Beidler, C.4 aut |
700 | 1 | a Belafdil, C.4 aut |
700 | 1 | a Bencze, A.4 aut |
700 | 1 | a Benndorf, A.4 aut |
700 | 1 | a Beurskens, M.4 aut |
700 | 1 | a Biedermann, C.4 aut |
700 | 1 | a Biletskyi, O.4 aut |
700 | 1 | a Blackwell, B.4 aut |
700 | 1 | a Blatzheim, M.4 aut |
700 | 1 | a Bluhm, T.4 aut |
700 | 1 | a Böckenhoff, D.4 aut |
700 | 1 | a Bongiovi, G.4 aut |
700 | 1 | a Borchardt, M.4 aut |
700 | 1 | a Borodin, D.4 aut |
700 | 1 | a Boscary, J.4 aut |
700 | 1 | a Bosch, H.4 aut |
700 | 1 | a Moiseyenko, Volodymyr4 aut |
773 | 0 | t Nuclear Fusiond : IOP Publishingg 62:4, s. 042022-042022q 62:4<042022-042022x 0029-5515x 1741-4326 |
856 | 4 | u https://doi.org/10.1088/1741-4326/ac2cf5y Fulltext |
856 | 4 | u https://uu.diva-portal.org/smash/get/diva2:1791532/FULLTEXT01.pdfx primaryx Raw objecty fulltext:print |
856 | 4 | u https://iopscience.iop.org/article/10.1088/1741-4326/ac2cf5/pdf |
856 | 4 8 | u https://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-510200 |
856 | 4 8 | u https://doi.org/10.1088/1741-4326/ac2cf5 |
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