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dc.contributor.authorNeustadt, Jack M. M.
dc.contributor.authorKochanek, Christopher S.
dc.contributor.authorMontano, John
dc.contributor.authorGelbord, Jonathan
dc.contributor.authorBarth, Aaron J.
dc.contributor.authorDe Rosa, Gisella
dc.contributor.authorKriss, Gerard A.
dc.contributor.authorCackett, Edward M.
dc.contributor.authorHorne, Keith
dc.contributor.authorKara, Erin A.
dc.contributor.authorLandt, Hermine
dc.contributor.authorNetzer, Hagai
dc.contributor.authorArav, Nahum
dc.contributor.authorBentz, Misty C.
dc.contributor.authorDalla Bontà, Elena
dc.contributor.authorDehghanian, Maryam
dc.contributor.authorDu, Pu
dc.contributor.authorEdelson, Rick
dc.contributor.authorFerland, Gary J.
dc.contributor.authorFian, Carina
dc.contributor.authorFischer, Travis
dc.contributor.authorGoad, Michael R.
dc.contributor.authorGonzález Buitrago, Diego H.
dc.contributor.authorGorjian, Varoujan
dc.contributor.authorGrier, Catherine J.
dc.contributor.authorHall, Patrick B.
dc.contributor.authorHomayouni, Y.
dc.contributor.authorHu, Chen
dc.contributor.authorIlić, Dragana
dc.contributor.authorJoner, Michael D.
dc.contributor.authorKaastra, Jelle
dc.contributor.authorKaspi, Shai
dc.contributor.authorKorista, Kirk T.
dc.contributor.authorKovačević, Andjelka B.
dc.contributor.authorLewin, Collin
dc.contributor.authorLi, Yan-Rong
dc.contributor.authorMcHardy, Ian M.
dc.contributor.authorMehdipour, Missagh
dc.contributor.authorMiller, Jake A.
dc.contributor.authorPanagiotou, Christos
dc.contributor.authorPartington, Ethan
dc.contributor.authorPlesha, Rachel
dc.contributor.authorPogge, Richard W.
dc.contributor.authorPopović, Luka Č.
dc.contributor.authorProga, Daniel
dc.contributor.authorStorchi-Bergmann, Thaisa
dc.contributor.authorSanmartim, David
dc.contributor.authorSiebert, Matthew R.
dc.contributor.authorSignorini, Matilde
dc.contributor.authorVestergaard, Marianne
dc.contributor.authorZaidouni, Fatima
dc.contributor.authorZu, Ying
dc.date.accessioned2024-02-02T10:30:08Z
dc.date.available2024-02-02T10:30:08Z
dc.date.issued2024-02-01
dc.identifier298802799
dc.identifiere8fc9b0b-c341-4207-9610-0d180818752b
dc.identifier85183963378
dc.identifier.citationNeustadt , J M M , Kochanek , C S , Montano , J , Gelbord , J , Barth , A J , De Rosa , G , Kriss , G A , Cackett , E M , Horne , K , Kara , E A , Landt , H , Netzer , H , Arav , N , Bentz , M C , Dalla Bontà , E , Dehghanian , M , Du , P , Edelson , R , Ferland , G J , Fian , C , Fischer , T , Goad , M R , González Buitrago , D H , Gorjian , V , Grier , C J , Hall , P B , Homayouni , Y , Hu , C , Ilić , D , Joner , M D , Kaastra , J , Kaspi , S , Korista , K T , Kovačević , A B , Lewin , C , Li , Y-R , McHardy , I M , Mehdipour , M , Miller , J A , Panagiotou , C , Partington , E , Plesha , R , Pogge , R W , Popović , L Č , Proga , D , Storchi-Bergmann , T , Sanmartim , D , Siebert , M R , Signorini , M , Vestergaard , M , Zaidouni , F & Zu , Y 2024 , ' AGN STORM 2. VI. Mapping temperature fluctuations in the accretion disk of Mrk 817 ' , Astrophysical Journal , vol. 961 , no. 2 , 219 . https://doi.org/10.3847/1538-4357/ad1386en
dc.identifier.issn0004-637X
dc.identifier.otherJisc: 1713499
dc.identifier.otherpublisher-id: apjad1386
dc.identifier.othermanuscript: ad1386
dc.identifier.otherother: aas49937
dc.identifier.urihttps://hdl.handle.net/10023/29137
dc.descriptionFunding: H.L. acknowledges a Daphne Jackson Fellowship sponsored by the Science and Technology Facilities Council (STFC), UK.en
dc.description.abstractWe fit the UV/optical lightcurves of the Seyfert 1 galaxy Mrk 817 to produce maps of the accretion disk temperature fluctuations δ T resolved in time and radius. The δT maps are dominated by coherent radial structures that move slowly (v ≪ c) inward and outward, which conflicts with the idea that disk variability is driven only by reverberation. Instead, these slow-moving temperature fluctuations are likely due to variability intrinsic to the disk. We test how modifying the input lightcurves by smoothing and subtracting them changes the resulting δT maps and find that most of the temperature fluctuations exist over relatively long timescales (hundreds of days). We show how detrending active galactic nucleus (AGN) lightcurves can be used to separate the flux variations driven by the slow-moving temperature fluctuations from those driven by reverberation. We also simulate contamination of the continuum emission from the disk by continuum emission from the broad-line region (BLR), which is expected to have spectral features localized in wavelength, such as the Balmer break contaminating the U band. We find that a disk with a smooth temperature profile cannot produce a signal localized in wavelength and that any BLR contamination should appear as residuals in our model lightcurves. Given the observed residuals, we estimate that only ∼20% of the variable flux in the U and u lightcurves can be due to BLR contamination. Finally, we discus how these maps not only describe the data but can make predictions about other aspects of AGN variability.
dc.format.extent18
dc.format.extent7693733
dc.language.isoeng
dc.relation.ispartofAstrophysical Journalen
dc.subjectAccretionen
dc.subjectBlack hole physicsen
dc.subjectSupermassive black holesen
dc.subjectActive galactic nucleien
dc.subjectQB Astronomyen
dc.subject3rd-DASen
dc.subject.lccQBen
dc.titleAGN STORM 2. VI. Mapping temperature fluctuations in the accretion disk of Mrk 817en
dc.typeJournal articleen
dc.contributor.institutionUniversity of St Andrews. School of Physics and Astronomyen
dc.contributor.institutionUniversity of St Andrews. St Andrews Centre for Exoplanet Scienceen
dc.identifier.doihttps://doi.org/10.3847/1538-4357/ad1386
dc.description.statusPeer revieweden


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