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Burston, Raymond B.
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Burston, Raymond B.
Official Name
Burston, Raymond B.
Alternative Name
Burston, R. B.
Burston, Raymond
Burston, R.
Main Affiliation
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2014Journal Article [["dc.bibliographiccitation.artnumber","A138"],["dc.bibliographiccitation.journal","Astronomy & Astrophysics"],["dc.bibliographiccitation.volume","567"],["dc.contributor.author","Roudier, Thierry"],["dc.contributor.author","Švanda, Michal"],["dc.contributor.author","Rieutord, M."],["dc.contributor.author","Malherbe, J. M."],["dc.contributor.author","Burston, Raymond"],["dc.contributor.author","Gizon, Laurent"],["dc.date.accessioned","2017-09-07T11:48:42Z"],["dc.date.available","2017-09-07T11:48:42Z"],["dc.date.issued","2014"],["dc.description.abstract","Studying the motions on the solar surface is fundamental for understanding how turbulent convection transports energy and how magnetic fields are distributed across the solar surface. From horizontal velocity measurements all over the visible disc of the Sun and using data from the Solar Dynamics Observatory/Helioseismic and Magnetic Imager (SDO/HMI), we investigate the structure and evolution of solar supergranulation. Horizontal velocity fields were measured by following the proper motions of solar granules using a newly developed version of the coherent structure tracking code. With this tool, maps of horizontal divergence were computed. We then segmented and identified supergranular cells and followed their histories by using spatio-temporal labelling. With this data set we derived the fundamental properties of supergranulation, including their motion. We find values of the fundamental parameters of supergranulation similar to previous studies: a mean lifetime of 1.5 days and a mean diameter of 25 Mm. The tracking of individual supergranular cells reveals the solar differential rotation and a poleward circulation trend of the meridional flow. The shape of the derived differential rotation and meridional flow does not depend on the cell size. If there is a background magnetic field, the diverging flows in supergranules are weaker. This study confirms that supergranules are suitable tracers that may be used to investigate the large-scale flows of the solar convection as long as they are detectable enough on the surface."],["dc.identifier.doi","10.1051/0004-6361/201423577"],["dc.identifier.fs","609661"],["dc.identifier.gro","3147039"],["dc.identifier.purl","https://resolver.sub.uni-goettingen.de/purl?gs-1/10927"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/4772"],["dc.language.iso","en"],["dc.notes.intern","Merged from goescholar"],["dc.notes.status","final"],["dc.notes.submitter","chake"],["dc.relation.issn","0004-6361"],["dc.relation.orgunit","Fakultät für Physik"],["dc.title","Structure and evolution of solar supergranulation using SDO/HMI data"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.peerReviewed","no"],["dc.type.version","published_version"],["dspace.entity.type","Publication"]]Details DOI2013Journal Article [["dc.bibliographiccitation.artnumber","A113"],["dc.bibliographiccitation.journal","Astronomy & Astrophysics"],["dc.bibliographiccitation.volume","552"],["dc.contributor.author","Roudier, Thierry"],["dc.contributor.author","Rieutord, M."],["dc.contributor.author","Prat, V."],["dc.contributor.author","Malherbe, J. M."],["dc.contributor.author","Renon, N."],["dc.contributor.author","Frank, Z."],["dc.contributor.author","Švanda, Michal"],["dc.contributor.author","Berger, Thomas"],["dc.contributor.author","Burston, Raymond"],["dc.contributor.author","Gizon, Laurent"],["dc.date.accessioned","2017-09-07T11:48:42Z"],["dc.date.available","2017-09-07T11:48:42Z"],["dc.date.issued","2013"],["dc.identifier.doi","10.1051/0004-6361/201220867"],["dc.identifier.gro","3147037"],["dc.identifier.purl","https://resolver.sub.uni-goettingen.de/purl?gs-1/10134"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/4771"],["dc.notes.intern","Merged from goescholar"],["dc.notes.status","public"],["dc.notes.submitter","chake"],["dc.publisher","EDP Sciences"],["dc.relation.issn","0004-6361"],["dc.relation.orgunit","Fakultät für Physik"],["dc.title","Comparison of solar horizontal velocity fields from SDO/HMI and Hinode data"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.peerReviewed","no"],["dc.type.version","published_version"],["dspace.entity.type","Publication"]]Details DOI2013Journal Article [["dc.bibliographiccitation.artnumber","32"],["dc.bibliographiccitation.firstpage","32"],["dc.bibliographiccitation.issue","1"],["dc.bibliographiccitation.journal","The Astrophysical Journal"],["dc.bibliographiccitation.volume","771"],["dc.contributor.author","Švanda, Michal"],["dc.contributor.author","Roudier, Thierry"],["dc.contributor.author","Rieutord, Michel"],["dc.contributor.author","Burston, Raymond"],["dc.contributor.author","Gizon, Laurent"],["dc.date.accessioned","2017-09-07T11:48:43Z"],["dc.date.available","2017-09-07T11:48:43Z"],["dc.date.issued","2013"],["dc.identifier.doi","10.1088/0004-637x/771/1/32"],["dc.identifier.gro","3147046"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/4778"],["dc.notes.intern","DOI Import GROB-393"],["dc.notes.status","zu prüfen"],["dc.notes.submitter","chake"],["dc.publisher","IOP Publishing"],["dc.relation.eissn","1538-4357"],["dc.relation.issn","0004-637X"],["dc.title","Comparison of Solar Surface Flows Inferred from Time-Distance Helioseismology and Coherent Structure Tracking Using HMI/ SDO Observations"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dc.type.peerReviewed","no"],["dspace.entity.type","Publication"]]Details DOI