Constraining clumpy dusty torus models using optimized filter sets
arXiv:1209.3870 · doi:10.1093/mnras/sts032
Abstract
Recent success in explaining several properties of the dusty torus around the central engine of active galactic nuclei has been gathered with the assumption of clumpiness. The properties of such clumpy dusty tori can be inferred by analyzing spectral energy distributions (SEDs), sometimes with scarce sampling given that large aperture telescopes and long integration times are needed to get good spatial resolution and signal. We aim at using the information already present in the data and the assumption of clumpy dusty torus, in particular, the CLUMPY models of Nenkova et al., to evaluate the optimum next observation such that we maximize the constraining power of the new observed photometric point. To this end, we use the existing and barely applied idea of Bayesian adaptive exploration, a mixture of Bayesian inference, prediction and decision theories. The result is that the new photometric filter to use is the one that maximizes the expected utility, which we approximate with the entropy of the predictive distribution. In other words, we have to sample where there is larger variability in the SEDs compatible with the data with what we know of the model parameters. We show that Bayesian adaptive exploration can be used to suggest new observations, and ultimately optimal filter sets, to better constrain the parameters of the clumpy dusty torus models. In general, we find that the region between 10 and 200 um produces the largest increase in the expected utility, although sub-mm data from ALMA also prove to be useful. It is important to note that here we are not considering the angular resolution of the data, which is key when constraining torus parameters. Therefore, the expected utilities derived from this methodology must be weighted with the spatial resolution of the data.
11 pages, 5 figures, accepted for publication in MNRAS
References in corpus (12)
- AGN Dusty Tori: I. Handling of Clumpy Media
- Early Science with SOFIA, the Stratospheric Observatory for Infrared Astronomy
- Resolving the complex structure of the dust torus in the active nucleus of the Circinus galaxy
- Radiative Transfer Modeling of Three-Dimensional Clumpy AGN Tori and its Application to NGC 1068
- Three-dimensional radiative transfer models of clumpy tori in Seyfert galaxies
- The Infrared Nuclear Emission of Seyfert Galaxies on Parsec Scales: Testing the Clumpy Torus models
- Parsec-scale dust emission from the polar region in the type 2 nucleus of NGC 424
- The mid IR -- hard X-ray correlation in AGN and its implications for dusty torus models
- The Origin of the Silicate Emission Features in the Seyfert 2 Galaxy, NGC 2110
- Gemini Imaging of Mid-IR Emission from the Nuclear Region of Centaurus A
- Probing the Nuclear and Circumnuclear Activity of NGC1365 in the Infrared
- Mid-infrared imaging of 25 local AGN with VLT-VISIR
Cited by in corpus (12)
- Molecular line emission in NGC1068 imaged with ALMA. I An AGN-driven outflow in the dense molecular gas
- Torus model properties of an ultra-hard X-ray selected sample of Seyfert galaxies
- The emission and distribution of dust of the torus of NGC 1068
- Investigating the sensitivity of observed spectral energy distributions to clumpy torus properties in Seyfert galaxies
- A mid-infrared view of the inner parsecs of the Seyfert galaxy Mrk 1066 using CanariCam/GTC
- The nuclear and extended infrared emission of the Seyfert galaxy NGC 2992 and the interacting system Arp 245
- Investigating the dusty torus of Seyfert galaxies using SOFIA/FORCAST photometry
- The role of the accretion disk, dust, and jets in the IR emission of low-luminosity AGN
- SOFIA/FORCAST resolves 30 - 40 um extended dust emission in nearby active galactic nuclei
- On the Nature of the High-Energy Rollover in 1H 0419-577
- Near- to Mid- Infrared Imaging and Spectroscopy of Two Buried AGNs of the Nearby Merging Galaxy NGC 6240 with Subaru/IRCS+AO and GTC/CanariCam
- Silicate emission in a type-2 quasar: JWST/MIRI constraints on torus geometry and radiative feedback