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Träfflista för sökning "WFRF:(Burgess J. M.) srt2:(2020-2024)"

Search: WFRF:(Burgess J. M.) > (2020-2024)

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1.
  • 2021
  • swepub:Mat__t
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  • 2021
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  • Glasbey, JC, et al. (author)
  • 2021
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  • Murari, A., et al. (author)
  • A control oriented strategy of disruption prediction to avoid the configuration collapse of tokamak reactors
  • 2024
  • In: Nature Communications. - 2041-1723 .- 2041-1723. ; 15:1
  • Journal article (peer-reviewed)abstract
    • The objective of thermonuclear fusion consists of producing electricity from the coalescence of light nuclei in high temperature plasmas. The most promising route to fusion envisages the confinement of such plasmas with magnetic fields, whose most studied configuration is the tokamak. Disruptions are catastrophic collapses affecting all tokamak devices and one of the main potential showstoppers on the route to a commercial reactor. In this work we report how, deploying innovative analysis methods on thousands of JET experiments covering the isotopic compositions from hydrogen to full tritium and including the major D-T campaign, the nature of the various forms of collapse is investigated in all phases of the discharges. An original approach to proximity detection has been developed, which allows determining both the probability of and the time interval remaining before an incoming disruption, with adaptive, from scratch, real time compatible techniques. The results indicate that physics based prediction and control tools can be developed, to deploy realistic strategies of disruption avoidance and prevention, meeting the requirements of the next generation of devices.
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  • Hyde, K. D., et al. (author)
  • Global consortium for the classification of fungi and fungus-like taxa
  • 2023
  • In: MYCOSPHERE. - : Mushroom Research Foundation. - 2077-7000 .- 2077-7019. ; 14:1, s. 1960-2012
  • Journal article (peer-reviewed)abstract
    • The Global Consortium for the Classification of Fungi and fungus-like taxa is an international initiative of more than 550 mycologists to develop an electronic structure for the classification of these organisms. The members of the Consortium originate from 55 countries/regions worldwide, from a wide range of disciplines, and include senior, mid-career and early-career mycologists and plant pathologists. The Consortium will publish a biannual update of the Outline of Fungi and fungus-like taxa, to act as an international scheme for other scientists. Notes on all newly published taxa at or above the level of species will be prepared and published online on the Outline of Fungi website (https://www.outlineoffungi.org/), and these will be finally published in the biannual edition of the Outline of Fungi and fungus-like taxa. Comments on recent important taxonomic opinions on controversial topics will be included in the biannual outline. For example, 'to promote a more stable taxonomy in Fusarium given the divergences over its generic delimitation', or 'are there too many genera in the Boletales?' and even more importantly, 'what should be done with the tremendously diverse 'dark fungal taxa?' There are undeniable differences in mycologists' perceptions and opinions regarding species classification as well as the establishment of new species. Given the pluralistic nature of fungal taxonomy and its implications for species concepts and the nature of species, this consortium aims to provide a platform to better refine and stabilise fungal classification, taking into consideration views from different parties. In the future, a confidential voting system will be set up to gauge the opinions of all mycologists in the Consortium on important topics. The results of such surveys will be presented to the International Commission on the Taxonomy of Fungi (ICTF) and the Nomenclature Committee for Fungi (NCF) with opinions and percentages of votes for and against. Criticisms based on scientific evidence with regards to nomenclature, classifications, and taxonomic concepts will be welcomed, and any recommendations on specific taxonomic issues will also be encouraged; however, we will encourage professionally and ethically responsible criticisms of others' work. This biannual ongoing project will provide an outlet for advances in various topics of fungal classification, nomenclature, and taxonomic concepts and lead to a community-agreed classification scheme for the fungi and fungus-like taxa. Interested parties should contact the lead author if they would like to be involved in future outlines.
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  • Galluccio, L., et al. (author)
  • Gaia Data Release 3: Reflectance spectra of Solar System small bodies
  • 2023
  • In: Astronomy and Astrophysics. - : EDP Sciences. - 0004-6361 .- 1432-0746. ; 674
  • Journal article (peer-reviewed)abstract
    • Context. The Gaia mission of the European Space Agency (ESA) has been routinely observing Solar System objects (SSOs) since the beginning of its operations in August 2014. The Gaia data release three (DR3) includes, for the first time, the mean reflectance spectra of a selected sample of 60 518 SSOs, primarily asteroids, observed between August 5, 2014, and May 28, 2017. Each reflectance spectrum was derived from measurements obtained by means of the Blue and Red photometers (BP/RP), which were binned in 16 discrete wavelength bands. For every spectrum, the DR3 also contains additional information about the data quality for each band.Aims. We describe the processing of the Gaia spectral data of SSOs, explaining both the criteria used to select the subset of asteroid spectra published in Gaia DR3, and the different steps of our internal validation procedures. In order to further assess the quality of Gaia SSO reflectance spectra, we carried out external validation against SSO reflectance spectra obtained from ground-based and space-borne telescopes and available in the literature; we present our validation approach.Methods. For each selected SSO, an epoch reflectance was computed by dividing the calibrated spectrum observed by the BP/RP at each transit on the focal plane by the mean spectrum of a solar analogue. The latter was obtained by averaging the Gaia spectral measurements of a selected sample of stars known to have very similar spectra to that of the Sun. Finally, a mean of the epoch reflectance spectra was calculated in 16 spectral bands for each SSO.Results. Gaia SSO reflectance spectra are in general agreement with those obtained from a ground-based spectroscopic campaign specifically designed to cover the same spectral interval as Gaia and mimic the illumination and observing geometry characterising Gaia SSO observations. In addition, the agreement between Gaia mean reflectance spectra and those available in the literature is good for bright SSOs, regardless of their taxonomic spectral class. We identify an increase in the spectral slope of S-type SSOs with increasing phase angle. Moreover, we show that the spectral slope increases and the depth of the 1 μm absorption band decreases for increasing ages of S-type asteroid families. The latter can be interpreted as proof of progressive ageing of S-type asteroid surfaces due to their exposure to space weathering effects.
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  • Result 1-10 of 75
Type of publication
journal article (68)
research review (4)
Type of content
peer-reviewed (70)
other academic/artistic (2)
Author/Editor
McMillan, P. J. (26)
Jordan, S (21)
Smith, M. (20)
Zhao, H (19)
Morris, D. (19)
Fabre, C. (18)
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Bianchi, L. (18)
Molnar, L. (18)
Anderson, R. I. (18)
Chiavassa, A. (18)
Sciacca, E. (18)
Raiteri, C. M. (18)
Pagani, C. (18)
Delgado, A. (18)
Recio-Blanco, A. (18)
Steele, I. A. (18)
Lorca, A. (18)
Regibo, S. (18)
Walton, N. A. (18)
Wyrzykowski, L. (18)
Gomez, A. (18)
Harrison, D. L. (18)
Marshall, D. J. (18)
Bressan, A (18)
Sadowski, G. (18)
Aerts, C. (18)
Caffau, E. (18)
Solano, E. (18)
Baines, D (18)
Lambert, S (18)
Pagano, I. (18)
Segransan, D. (18)
Siebert, A. (18)
Ramos, P. (18)
Lanzafame, A. C. (18)
Randich, S. (18)
Gilmore, G. (18)
Prusti, T. (18)
Teyssier, D. (18)
Robin, A. C. (18)
Bakker, J (18)
Lanza, A. F. (18)
Altavilla, G. (18)
Pancino, E. (18)
Cropper, M. (18)
Molina, D. (18)
Kostrzewa-Rutkowska, ... (18)
Fouesneau, M. (18)
Sordo, R. (18)
De Angeli, F. (18)
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University
Lund University (31)
Uppsala University (30)
Karolinska Institutet (27)
Luleå University of Technology (18)
University of Gothenburg (9)
Umeå University (5)
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Royal Institute of Technology (4)
Chalmers University of Technology (4)
Stockholm University (3)
Högskolan Dalarna (1)
Swedish Museum of Natural History (1)
Swedish University of Agricultural Sciences (1)
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Language
English (75)
Research subject (UKÄ/SCB)
Natural sciences (36)
Medical and Health Sciences (22)
Engineering and Technology (6)
Social Sciences (1)

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