Multiwavelength Monitoring of the Dwarf Seyfert 1 Galaxy NGC 4395. III. Optical Variability and X-Ray/UV/Optical Correlations

We present optical observations of the low-luminosity Seyfert 1 nucleus of NGC 4395, as part of a multiwavelength reverberation-mapping program. Observations were carried out over two nights in 2004 April at Lick, Wise, and Kitt Peak Observatories. We obtained V- and B-band photometry, and spectra o...

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Veröffentlicht in:The Astrophysical journal 2006-10, Vol.650 (1), p.88-101
Hauptverfasser: Desroches, Louis-Benoit, Filippenko, Alexei V, Kaspi, Shai, Laor, Ari, Maoz, Dan, Ganeshalingam, Mohan, Li, Weidong, Moran, Edward C, Swift, Brandon, Bentz, Misty C, Ho, Luis C, Nandra, Kirpal, O’Neill, Paul M, Peterson, Bradley M
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Sprache:eng
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Zusammenfassung:We present optical observations of the low-luminosity Seyfert 1 nucleus of NGC 4395, as part of a multiwavelength reverberation-mapping program. Observations were carried out over two nights in 2004 April at Lick, Wise, and Kitt Peak Observatories. We obtained V- and B-band photometry, and spectra over the range 3500-6800 AA. Simultaneous Hubble Space Telescope UV and Chandra X-ray observations are presented in companion papers. Even though NGC 4395 was in an extremely low state of activity, we detect significant continuum variability of 2%-10%, increasing toward shorter wavelengths. The continuum light curves, both spectroscopic and photometric, are qualitatively similar to the simultaneous UV and X-ray light curves. Interband cross-correlations suggest that the optical continuum emission lags behind the UV continuum emission by 24 super(+7 -9) minutes, and that the optical continuum emission lags behind the X-ray continuum emission by 44 c 13 minutes, consistent with a reprocessing model for active galactic nucleus emission. There are also hints of Balmer emission lines lagging behind the optical continuum by an amount slightly larger than the emission-line lag detected in the UV. These results are all similar to those of other Seyfert 1 nuclei. The emission-line lag yields a mass measurement of the central black hole, which although not very significant, is consistent with the value derived from the simultaneous UV data.
ISSN:0004-637X
1538-4357
DOI:10.1086/507263