Extended Void Merging Tree Algorithm for Self-Similar Models

dc.contributor.author Russell, Esra
dc.coverage.doi 10.1093/mnras/stt2309
dc.date.accessioned 2017-05-17T10:38:04Z
dc.date.available 2017-05-17T10:38:04Z
dc.date.issued 2014
dc.description.abstract In hierarchical evolution, voids exhibit two different behaviours related with their surroundings and environments, they can merge or collapse. These two different types of void processes can be described by the two-barrier excursion set formalism based on Brownian random walks. In this study, the analytical approximate description of the growing void merging algorithm is extended by taking into account the contributions of voids that are embedded into overdense region(s) which are destined to vanish due to gravitational collapse. Following this, to construct a realistic void merging model that consists of both collapse and merging processes, the twobarrier excursion set formalism of the void population is used. Assuming spherical voids in the Einstein-de Sitter Universe, the void merging algorithm which allows us to consider the two main processes of void hierarchy in one formalism is constructed. In addition to this, the merger rates, void survival probabilities, void size distributions in terms of the collapse barrier and finally, the void merging tree algorithm in the self-similar models are defined and derived. en_US
dc.identifier.citation Russell, E. (2014). Extended void merging tree algorithm for self-similar models. Monthly Notices of the Royal Astronomical Society, 438(2), 1630-1653. doi:10.1093/mnras/stt2309 en_US
dc.identifier.doi 10.1093/mnras/stt2309 en_US
dc.identifier.doi 10.1093/mnras/stt2309
dc.identifier.issn 1365-2966
dc.identifier.issn 0035-8711
dc.identifier.scopus 2-s2.0-84893403853
dc.identifier.uri https://doi.org/10.1093/mnras/stt2309
dc.identifier.uri https://hdl.handle.net/11147/5537
dc.language.iso en en_US
dc.publisher Oxford University Press en_US
dc.relation.ispartof Monthly Notices of the Royal Astronomical Society en_US
dc.rights info:eu-repo/semantics/openAccess en_US
dc.subject Large-scale structure of universe en_US
dc.subject Cosmology en_US
dc.subject Algorithms en_US
dc.subject Einstein-de Sitter Universe en_US
dc.title Extended Void Merging Tree Algorithm for Self-Similar Models en_US
dc.type Article en_US
dspace.entity.type Publication
gdc.author.institutional Russell, Esra
gdc.bip.impulseclass C5
gdc.bip.influenceclass C5
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gdc.coar.access open access
gdc.coar.type text::journal::journal article
gdc.collaboration.industrial false
gdc.description.department İzmir Institute of Technology. Mathematics en_US
gdc.description.endpage 1653 en_US
gdc.description.issue 2 en_US
gdc.description.publicationcategory Makale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanı en_US
gdc.description.scopusquality Q1
gdc.description.startpage 1630 en_US
gdc.description.volume 438 en_US
gdc.description.wosquality Q1
gdc.identifier.openalex W2091025926
gdc.identifier.wos WOS:000330955900054
gdc.index.type WoS
gdc.index.type Scopus
gdc.oaire.accesstype GOLD
gdc.oaire.diamondjournal false
gdc.oaire.impulse 2.0
gdc.oaire.influence 2.7197202E-9
gdc.oaire.isgreen true
gdc.oaire.keywords Cosmology and Nongalactic Astrophysics (astro-ph.CO)
gdc.oaire.keywords cosmology: theory-large-scale structure of Universe
gdc.oaire.keywords Large-scale structure of universe
gdc.oaire.keywords FOS: Physical sciences
gdc.oaire.keywords Algorithms
gdc.oaire.keywords Einstein-de Sitter Universe
gdc.oaire.keywords Cosmology
gdc.oaire.keywords methods: analytical
gdc.oaire.keywords methods: numerical
gdc.oaire.keywords Astrophysics - Cosmology and Nongalactic Astrophysics
gdc.oaire.popularity 1.741837E-9
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gdc.oaire.sciencefields 0103 physical sciences
gdc.oaire.sciencefields 01 natural sciences
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gdc.openalex.toppercent TOP 10%
gdc.opencitations.count 3
gdc.plumx.crossrefcites 2
gdc.plumx.mendeley 6
gdc.plumx.scopuscites 3
gdc.scopus.citedcount 3
gdc.wos.citedcount 3
relation.isOrgUnitOfPublication.latestForDiscovery 9af2b05f-28ac-4003-8abe-a4dfe192da5e

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