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dc.contributor.authorWorseck, Gábor
dc.date.accessioned2010-10-12T18:23:06Z
dc.date.available2010-10-12T18:23:06Z
dc.date.issued2008
dc.identifier.urihttp://hdl.handle.net/11858/00-1735-0000-0001-30C0-3
dc.description.abstractThe intergalactic medium is kept highly photoionised by the intergalactic UV background radiation field generated by the overall population of quasars and galaxies. In the vicinity of sources of UV photons, such as luminous high-redshift quasars, the UV radiation field is enhanced due to the local source contribution. The higher degree of ionisation is visible as a reduced line density or generally as a decreased level of absorption in the Lyman alpha forest of neutral hydrogen. This so-called proximity effect has been detected with high statistical significance towards luminous quasars. If quasars radiate rather isotropically, background quasar sightlines located near foreground quasars should show a region of decreased Lyman alpha absorption close to the foreground quasar. Despite considerable effort, such a transverse proximity effect has only been detected in a few cases...
dc.format.extent144 S.
dc.format.mimetypeapplication/pdf
dc.language.isoeng
dc.publisherUniv. Potsdam
dc.rights.urihttp://e-docs.geo-leo.de/rights
dc.subject.ddc523
dc.subject.ddc550
dc.subject.gokTIE 400
dc.subject.gokTIE 900
dc.titleThe transverse proximity effect in quasar spectra
dc.typemonograph
dc.subject.gokverbalSonstige Sternensysteme {Astronomie}
dc.subject.gokverbalSpektren und Leuchtkraft von Sternsystemen {Astronomie}
dc.identifier.doi10.23689/fidgeo-60
dc.identifier.ppn571394019
dc.type.versionpublishedVersion
dc.relation.collectionAstronomie, Astrophysik, Weltraumforschung
dc.description.typethesis


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