arXiv Analytics

Sign in

arXiv:1806.08958 [astro-ph.GA]AbstractReferencesReviewsResources

Starburst-AGN mixing: TYPHOON observations of NGC 1365, NGC 1068, and the effect of spatial resolution on the AGN fraction

Joshua J. D'Agostino, Henry Poetrodjojo, I-Ting Ho, Brent Groves, Lisa Kewley, Barry F. Madore, Jeff Rich, Mark Seibert

Published 2018-06-23Version 1

We demonstrate a robust method of resolving the star-formation and AGN contributions to emission lines using two very well known AGN systems: NGC 1365, and NGC 1068, using the high spatial resolution data from the TYPHOON/PrISM survey. We expand the previous method of calculating the AGN fraction by using theoretical-based model grids rather than empirical points. The high spatial resolution of the TYPHOON/PrISM observations show evidence of both star formation and AGN activity occurring in the nuclei of the two galaxies. We rebin the data to the lower resolutions, typically found in other integral field spectroscopy surveys such as SAMI, MaNGA, and CALIFA. The results show that when rebinned from the native resolution of TYPHOON (< 200 pc/pixel) to 1 kpc/pixel, the effects include a roughly 3 kpc increase in the radius of measured AGN activity, and a factor of 2 to 7 increase in the detection of low surface brightness features such as shocks. All of this information is critical, because information on certain physical processes may be lost at varying resolutions. We make recommendations for analysing data at current IFU survey resolutions.

Comments: 30 pages, 28 figures, accepted for publication by MNRAS
Categories: astro-ph.GA
Related articles: Most relevant | Search more
arXiv:1902.02800 [astro-ph.GA] (Published 2019-02-07)
Does AGN Fraction Depend on Redshift or Luminosity? An Extinction-Free Test by 18-band Mid-infrared SED Fitting in the AKARI NEP Wide Field
arXiv:2207.07137 [astro-ph.GA] (Published 2022-07-14)
The ALPINE-ALMA [CII] survey: The infrared-radio correlation and AGN fraction of star-forming galaxies at z $\sim$ 4.4-5.9
Lu Shen et al.
arXiv:2409.13441 [astro-ph.GA] (Published 2024-09-20)
Searching For JWST's Little Red Dots