Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548
Autor(a) principal: | |
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Data de Publicação: | 2016 |
Outros Autores: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Tipo de documento: | Artigo |
Idioma: | eng |
Título da fonte: | Repositório Institucional da UFRGS |
Texto Completo: | http://hdl.handle.net/10183/148901 |
Resumo: | We present ground-based optical photometric monitoring data for NGC 5548, part of an extended multiwavelength reverberation mapping campaign. The light curves have nearly daily cadence from 2014 January to July in nine filters (BVRI and ugriz). Combined with ultraviolet data from the Hubble Space Telescope and Swift, we confirm significant time delays between the continuum bands as a function of wavelength, extending the wavelength coverage from 1158 Å to the z band (~9160 Å). We find that the lags at wavelengths longer than the V band are equal to or greater than the lags of high-ionization-state emission lines (such as He II l1640 and l4686), suggesting that the continuum-emitting source is of a physical size comparable to the inner broad-line region (BLR). The trend of lag with wavelength is broadly consistent with the prediction for continuum reprocessing by an accretion disk with t μ l4 3. However, the lags also imply a disk radius that is 3 times larger than the prediction from standard thin-disk theory, assuming that the bolometric luminosity is 10% of the Eddington luminosity (L = 0.1LEdd). Using optical spectra from the Large Binocular Telescope, we estimate the bias of the interband continuum lags due to BLR emission observed in the filters. We find that the bias for filters with high levels of BLR contamination (~20%) can be important for the shortest continuum lagsand likely has a significant impact on the u and U bands owing to Balmer continuum emission. |
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Fausnaugh, MichaelDenney, Kelly D.Barth, Aaron J.Bentz, Misty CherieBottorff, MarkCarini, MichaelCroxall, Kevin V.De Rosa, GisellaGoad, Michael R.Horne, KeithJoner, Michael D.Kaspi, ShaiKim, MinsunKlimanov, S. A.Kochanek, C.S.Leonard, Douglas C.Netzer, HagaiPeterson, Bradley M.Schnuelle, KirstenSergeev, Sergey G.Vestergaard, MarianneZheng, WeiKangZu, YingAnderson, MattArévalo, PatriciaBazhaw, C.Borman, G. A.Boroson, ToddBrandt, W.N.Breeveld, Alice A.Brewer, Brendon J.Cackett, Edward M.Crenshaw, Daniel MichaelDalla Bontà, ElenaDe Lorenzo-Cáceres, AdrianaDietrich, MatthiasEdelson, Rick A.Efimova, Natalia V.Ely, Justin C.Evans, Phil A.Filippenko, Alexei V.Flatland, KelsiGehrels, Neil C.Geier, StephanGelbord, Jonathan M.Gonzalez, Luis A.Gorjian, VaroujanGrier, Catherine J.Grupe, DirkHall, Patrick B.Hicks, ShannonHorenstein, DanielHutchison, T.Im, MyungshinJensen, J. J.Jones, Jeremy BrynKaastra, Jelle S.Kelly, Brandon CharlesKennea, Jamie A.Kim, Sang ChulKorista, Kirk T.Kriss, Gerard A.Lee, Julia C.Lira, PaulinaMacInnis, F.Manne-Nicholas, Emily R.Mathur, SmitaMchardy, Ian MichaelMontouri, C.Musso, R.Nazarov, S. V.Norris, Richard P.Nousek, John A.Okhmat, D. N.Pancoast, AnnaPapadakis, IossifParks, J. RobertPei, LiuyiPogge, Richard WilliamPott, Jörg-UweRafter, Stephen E.Rix, H.-W.Saylor, Dicy A.Schimoia, Jáderson da SilvaSiegel, Michael H.Spencer, MeghinStarkey, Donn R.Sung, Hyun-IlTeems, Katherine G.Treu, TommasoTurner, Clay S.Uttley, PhilVillforth, CarolinWeiss, Y.Woo, Jong-HakYan, H.Young, Stuart2016-10-07T02:13:37Z20160004-6256http://hdl.handle.net/10183/148901001002179We present ground-based optical photometric monitoring data for NGC 5548, part of an extended multiwavelength reverberation mapping campaign. The light curves have nearly daily cadence from 2014 January to July in nine filters (BVRI and ugriz). Combined with ultraviolet data from the Hubble Space Telescope and Swift, we confirm significant time delays between the continuum bands as a function of wavelength, extending the wavelength coverage from 1158 Å to the z band (~9160 Å). We find that the lags at wavelengths longer than the V band are equal to or greater than the lags of high-ionization-state emission lines (such as He II l1640 and l4686), suggesting that the continuum-emitting source is of a physical size comparable to the inner broad-line region (BLR). The trend of lag with wavelength is broadly consistent with the prediction for continuum reprocessing by an accretion disk with t μ l4 3. However, the lags also imply a disk radius that is 3 times larger than the prediction from standard thin-disk theory, assuming that the bolometric luminosity is 10% of the Eddington luminosity (L = 0.1LEdd). Using optical spectra from the Large Binocular Telescope, we estimate the bias of the interband continuum lags due to BLR emission observed in the filters. We find that the bias for filters with high levels of BLR contamination (~20%) can be important for the shortest continuum lagsand likely has a significant impact on the u and U bands owing to Balmer continuum emission.application/pdfengThe astronomical journal. Bristol. Vol. 821, no. 1 (Apr. 2016), 56, 25 p.Galáxias ativasGaláxia NGC 5548Galaxias seyfertNucleo galaticoGalaxies: activeGalaxies: individual (NGC 5548)Galaxies: nucleiGalaxies: Seyfert SupportingMaterial: machine-readable tablesSpace telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548Estrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSORIGINAL001002179.pdf001002179.pdfTexto completo (inglês)application/pdf1850456http://www.lume.ufrgs.br/bitstream/10183/148901/1/001002179.pdf668faab7fee79eb640dbc6455d9d4c5fMD51TEXT001002179.pdf.txt001002179.pdf.txtExtracted Texttext/plain128164http://www.lume.ufrgs.br/bitstream/10183/148901/2/001002179.pdf.txtf510e06942025603002a71451a8805beMD52THUMBNAIL001002179.pdf.jpg001002179.pdf.jpgGenerated Thumbnailimage/jpeg1858http://www.lume.ufrgs.br/bitstream/10183/148901/3/001002179.pdf.jpg881f884d615087ff39ee000da7a01c09MD5310183/1489012018-10-29 09:09:42.724oai:www.lume.ufrgs.br:10183/148901Repositório de PublicaçõesPUBhttps://lume.ufrgs.br/oai/requestopendoar:2018-10-29T12:09:42Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false |
dc.title.pt_BR.fl_str_mv |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 |
title |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 |
spellingShingle |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 Fausnaugh, Michael Galáxias ativas Galáxia NGC 5548 Galaxias seyfert Nucleo galatico Galaxies: active Galaxies: individual (NGC 5548) Galaxies: nuclei Galaxies: Seyfert Supporting Material: machine-readable tables |
title_short |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 |
title_full |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 |
title_fullStr |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 |
title_full_unstemmed |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 |
title_sort |
Space telescope and optical reverberation mapping project : III. optical continuum emission and broadband time delays in NGC 5548 |
author |
Fausnaugh, Michael |
author_facet |
Fausnaugh, Michael Denney, Kelly D. Barth, Aaron J. Bentz, Misty Cherie Bottorff, Mark Carini, Michael Croxall, Kevin V. De Rosa, Gisella Goad, Michael R. Horne, Keith Joner, Michael D. Kaspi, Shai Kim, Minsun Klimanov, S. A. Kochanek, C.S. Leonard, Douglas C. Netzer, Hagai Peterson, Bradley M. Schnuelle, Kirsten Sergeev, Sergey G. Vestergaard, Marianne Zheng, WeiKang Zu, Ying Anderson, Matt Arévalo, Patricia Bazhaw, C. Borman, G. A. Boroson, Todd Brandt, W.N. Breeveld, Alice A. Brewer, Brendon J. Cackett, Edward M. Crenshaw, Daniel Michael Dalla Bontà, Elena De Lorenzo-Cáceres, Adriana Dietrich, Matthias Edelson, Rick A. Efimova, Natalia V. Ely, Justin C. Evans, Phil A. Filippenko, Alexei V. Flatland, Kelsi Gehrels, Neil C. Geier, Stephan Gelbord, Jonathan M. Gonzalez, Luis A. Gorjian, Varoujan Grier, Catherine J. Grupe, Dirk Hall, Patrick B. Hicks, Shannon Horenstein, Daniel Hutchison, T. Im, Myungshin Jensen, J. J. Jones, Jeremy Bryn Kaastra, Jelle S. Kelly, Brandon Charles Kennea, Jamie A. Kim, Sang Chul Korista, Kirk T. Kriss, Gerard A. Lee, Julia C. Lira, Paulina MacInnis, F. Manne-Nicholas, Emily R. Mathur, Smita Mchardy, Ian Michael Montouri, C. Musso, R. Nazarov, S. V. Norris, Richard P. Nousek, John A. Okhmat, D. N. Pancoast, Anna Papadakis, Iossif Parks, J. Robert Pei, Liuyi Pogge, Richard William Pott, Jörg-Uwe Rafter, Stephen E. Rix, H.-W. Saylor, Dicy A. Schimoia, Jáderson da Silva Siegel, Michael H. Spencer, Meghin Starkey, Donn R. Sung, Hyun-Il Teems, Katherine G. Treu, Tommaso Turner, Clay S. Uttley, Phil Villforth, Carolin Weiss, Y. Woo, Jong-Hak Yan, H. Young, Stuart |
author_role |
author |
author2 |
Denney, Kelly D. Barth, Aaron J. Bentz, Misty Cherie Bottorff, Mark Carini, Michael Croxall, Kevin V. De Rosa, Gisella Goad, Michael R. Horne, Keith Joner, Michael D. Kaspi, Shai Kim, Minsun Klimanov, S. A. Kochanek, C.S. Leonard, Douglas C. Netzer, Hagai Peterson, Bradley M. Schnuelle, Kirsten Sergeev, Sergey G. Vestergaard, Marianne Zheng, WeiKang Zu, Ying Anderson, Matt Arévalo, Patricia Bazhaw, C. Borman, G. A. Boroson, Todd Brandt, W.N. Breeveld, Alice A. Brewer, Brendon J. Cackett, Edward M. Crenshaw, Daniel Michael Dalla Bontà, Elena De Lorenzo-Cáceres, Adriana Dietrich, Matthias Edelson, Rick A. Efimova, Natalia V. Ely, Justin C. Evans, Phil A. Filippenko, Alexei V. Flatland, Kelsi Gehrels, Neil C. Geier, Stephan Gelbord, Jonathan M. Gonzalez, Luis A. Gorjian, Varoujan Grier, Catherine J. Grupe, Dirk Hall, Patrick B. Hicks, Shannon Horenstein, Daniel Hutchison, T. Im, Myungshin Jensen, J. J. Jones, Jeremy Bryn Kaastra, Jelle S. Kelly, Brandon Charles Kennea, Jamie A. Kim, Sang Chul Korista, Kirk T. Kriss, Gerard A. Lee, Julia C. Lira, Paulina MacInnis, F. Manne-Nicholas, Emily R. Mathur, Smita Mchardy, Ian Michael Montouri, C. Musso, R. Nazarov, S. V. Norris, Richard P. Nousek, John A. Okhmat, D. N. Pancoast, Anna Papadakis, Iossif Parks, J. Robert Pei, Liuyi Pogge, Richard William Pott, Jörg-Uwe Rafter, Stephen E. Rix, H.-W. Saylor, Dicy A. Schimoia, Jáderson da Silva Siegel, Michael H. Spencer, Meghin Starkey, Donn R. Sung, Hyun-Il Teems, Katherine G. Treu, Tommaso Turner, Clay S. Uttley, Phil Villforth, Carolin Weiss, Y. Woo, Jong-Hak Yan, H. Young, Stuart |
author2_role |
author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author author |
dc.contributor.author.fl_str_mv |
Fausnaugh, Michael Denney, Kelly D. Barth, Aaron J. Bentz, Misty Cherie Bottorff, Mark Carini, Michael Croxall, Kevin V. De Rosa, Gisella Goad, Michael R. Horne, Keith Joner, Michael D. Kaspi, Shai Kim, Minsun Klimanov, S. A. Kochanek, C.S. Leonard, Douglas C. Netzer, Hagai Peterson, Bradley M. Schnuelle, Kirsten Sergeev, Sergey G. Vestergaard, Marianne Zheng, WeiKang Zu, Ying Anderson, Matt Arévalo, Patricia Bazhaw, C. Borman, G. A. Boroson, Todd Brandt, W.N. Breeveld, Alice A. Brewer, Brendon J. Cackett, Edward M. Crenshaw, Daniel Michael Dalla Bontà, Elena De Lorenzo-Cáceres, Adriana Dietrich, Matthias Edelson, Rick A. Efimova, Natalia V. Ely, Justin C. Evans, Phil A. Filippenko, Alexei V. Flatland, Kelsi Gehrels, Neil C. Geier, Stephan Gelbord, Jonathan M. Gonzalez, Luis A. Gorjian, Varoujan Grier, Catherine J. Grupe, Dirk Hall, Patrick B. Hicks, Shannon Horenstein, Daniel Hutchison, T. Im, Myungshin Jensen, J. J. Jones, Jeremy Bryn Kaastra, Jelle S. Kelly, Brandon Charles Kennea, Jamie A. Kim, Sang Chul Korista, Kirk T. Kriss, Gerard A. Lee, Julia C. Lira, Paulina MacInnis, F. Manne-Nicholas, Emily R. Mathur, Smita Mchardy, Ian Michael Montouri, C. Musso, R. Nazarov, S. V. Norris, Richard P. Nousek, John A. Okhmat, D. N. Pancoast, Anna Papadakis, Iossif Parks, J. Robert Pei, Liuyi Pogge, Richard William Pott, Jörg-Uwe Rafter, Stephen E. Rix, H.-W. Saylor, Dicy A. Schimoia, Jáderson da Silva Siegel, Michael H. Spencer, Meghin Starkey, Donn R. Sung, Hyun-Il Teems, Katherine G. Treu, Tommaso Turner, Clay S. Uttley, Phil Villforth, Carolin Weiss, Y. Woo, Jong-Hak Yan, H. Young, Stuart |
dc.subject.por.fl_str_mv |
Galáxias ativas Galáxia NGC 5548 Galaxias seyfert Nucleo galatico |
topic |
Galáxias ativas Galáxia NGC 5548 Galaxias seyfert Nucleo galatico Galaxies: active Galaxies: individual (NGC 5548) Galaxies: nuclei Galaxies: Seyfert Supporting Material: machine-readable tables |
dc.subject.eng.fl_str_mv |
Galaxies: active Galaxies: individual (NGC 5548) Galaxies: nuclei Galaxies: Seyfert Supporting Material: machine-readable tables |
description |
We present ground-based optical photometric monitoring data for NGC 5548, part of an extended multiwavelength reverberation mapping campaign. The light curves have nearly daily cadence from 2014 January to July in nine filters (BVRI and ugriz). Combined with ultraviolet data from the Hubble Space Telescope and Swift, we confirm significant time delays between the continuum bands as a function of wavelength, extending the wavelength coverage from 1158 Å to the z band (~9160 Å). We find that the lags at wavelengths longer than the V band are equal to or greater than the lags of high-ionization-state emission lines (such as He II l1640 and l4686), suggesting that the continuum-emitting source is of a physical size comparable to the inner broad-line region (BLR). The trend of lag with wavelength is broadly consistent with the prediction for continuum reprocessing by an accretion disk with t μ l4 3. However, the lags also imply a disk radius that is 3 times larger than the prediction from standard thin-disk theory, assuming that the bolometric luminosity is 10% of the Eddington luminosity (L = 0.1LEdd). Using optical spectra from the Large Binocular Telescope, we estimate the bias of the interband continuum lags due to BLR emission observed in the filters. We find that the bias for filters with high levels of BLR contamination (~20%) can be important for the shortest continuum lagsand likely has a significant impact on the u and U bands owing to Balmer continuum emission. |
publishDate |
2016 |
dc.date.accessioned.fl_str_mv |
2016-10-07T02:13:37Z |
dc.date.issued.fl_str_mv |
2016 |
dc.type.driver.fl_str_mv |
Estrangeiro info:eu-repo/semantics/article |
dc.type.status.fl_str_mv |
info:eu-repo/semantics/publishedVersion |
format |
article |
status_str |
publishedVersion |
dc.identifier.uri.fl_str_mv |
http://hdl.handle.net/10183/148901 |
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0004-6256 |
dc.identifier.nrb.pt_BR.fl_str_mv |
001002179 |
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http://hdl.handle.net/10183/148901 |
dc.language.iso.fl_str_mv |
eng |
language |
eng |
dc.relation.ispartof.pt_BR.fl_str_mv |
The astronomical journal. Bristol. Vol. 821, no. 1 (Apr. 2016), 56, 25 p. |
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info:eu-repo/semantics/openAccess |
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openAccess |
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