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The accuracy of morphological decomposition of active galactic nucleus host galaxies

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The accuracy of morphological decomposition of active galactic nucleus host galaxies. / Simmons, B. D.; Urry, C. M.
In: The Astrophysical Journal, Vol. 683, No. 2, 20.08.2008, p. 644-658.

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Simmons BD, Urry CM. The accuracy of morphological decomposition of active galactic nucleus host galaxies. The Astrophysical Journal. 2008 Aug 20;683(2):644-658. doi: 10.1086/589827

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Simmons, B. D. ; Urry, C. M. / The accuracy of morphological decomposition of active galactic nucleus host galaxies. In: The Astrophysical Journal. 2008 ; Vol. 683, No. 2. pp. 644-658.

Bibtex

@article{f1523904de344e80aaadd508c179615a,
title = "The accuracy of morphological decomposition of active galactic nucleus host galaxies",
abstract = "In order to assess the accuracy with which we can determine the morphologies of AGN host galaxies, we have simulated more than 50,000 ACS images of galaxies with z < 1.25, using image and noise properties appropriate for the GOODS survey. We test the effect of central point-source brightness on host galaxy parameter recovery with a set of simulated AGN host galaxies made by adding point sources to the centers of normal galaxies. We extend this analysis and also quantify the recovery of intrinsic morphological parameters of AGN host galaxies with a set of fully simulated inactive and AGN host galaxies. We can reliably separate good from poor fit results using a combination of reasonable error cuts, in the regime where (Lhost/LPS) > 1 : 4. We give quantitative estimates of parameter errors as a function of host-to-point-source ratio. In general, we separate host and point-source magnitudes reliably at all redshifts; point sources are well recovered more than 90% of the time, although spurious detection of central point sources can be as high as 25% for bulge-dominated sources. We find a general correlation between S{\'e}rsic index and intrinsic bulge-to-total ratio, such that a host galaxy with S{\'e}rsic n < 1.5 generally has at least 80% of its light from a disk component. Likewise, {"}bulge-dominated{"} galaxies with n > 4 typically derive at least 70% of their total host galaxy light from a bulge, but this number can be as low as 55%. Single-component S{\'e}rsic fits to an AGN host galaxy are statistically very reliable to z < 1.25 (for ACS survey data like ours). In contrast, two-component fits involving separate bulge and disk components tend to overestimate the bulge fraction by ~10%, with uncertainty of order 50%.",
author = "Simmons, {B. D.} and Urry, {C. M.}",
year = "2008",
month = aug,
day = "20",
doi = "10.1086/589827",
language = "English",
volume = "683",
pages = "644--658",
journal = "The Astrophysical Journal",
issn = "0004-637X",
publisher = "Institute of Physics Publishing",
number = "2",

}

RIS

TY - JOUR

T1 - The accuracy of morphological decomposition of active galactic nucleus host galaxies

AU - Simmons, B. D.

AU - Urry, C. M.

PY - 2008/8/20

Y1 - 2008/8/20

N2 - In order to assess the accuracy with which we can determine the morphologies of AGN host galaxies, we have simulated more than 50,000 ACS images of galaxies with z < 1.25, using image and noise properties appropriate for the GOODS survey. We test the effect of central point-source brightness on host galaxy parameter recovery with a set of simulated AGN host galaxies made by adding point sources to the centers of normal galaxies. We extend this analysis and also quantify the recovery of intrinsic morphological parameters of AGN host galaxies with a set of fully simulated inactive and AGN host galaxies. We can reliably separate good from poor fit results using a combination of reasonable error cuts, in the regime where (Lhost/LPS) > 1 : 4. We give quantitative estimates of parameter errors as a function of host-to-point-source ratio. In general, we separate host and point-source magnitudes reliably at all redshifts; point sources are well recovered more than 90% of the time, although spurious detection of central point sources can be as high as 25% for bulge-dominated sources. We find a general correlation between Sérsic index and intrinsic bulge-to-total ratio, such that a host galaxy with Sérsic n < 1.5 generally has at least 80% of its light from a disk component. Likewise, "bulge-dominated" galaxies with n > 4 typically derive at least 70% of their total host galaxy light from a bulge, but this number can be as low as 55%. Single-component Sérsic fits to an AGN host galaxy are statistically very reliable to z < 1.25 (for ACS survey data like ours). In contrast, two-component fits involving separate bulge and disk components tend to overestimate the bulge fraction by ~10%, with uncertainty of order 50%.

AB - In order to assess the accuracy with which we can determine the morphologies of AGN host galaxies, we have simulated more than 50,000 ACS images of galaxies with z < 1.25, using image and noise properties appropriate for the GOODS survey. We test the effect of central point-source brightness on host galaxy parameter recovery with a set of simulated AGN host galaxies made by adding point sources to the centers of normal galaxies. We extend this analysis and also quantify the recovery of intrinsic morphological parameters of AGN host galaxies with a set of fully simulated inactive and AGN host galaxies. We can reliably separate good from poor fit results using a combination of reasonable error cuts, in the regime where (Lhost/LPS) > 1 : 4. We give quantitative estimates of parameter errors as a function of host-to-point-source ratio. In general, we separate host and point-source magnitudes reliably at all redshifts; point sources are well recovered more than 90% of the time, although spurious detection of central point sources can be as high as 25% for bulge-dominated sources. We find a general correlation between Sérsic index and intrinsic bulge-to-total ratio, such that a host galaxy with Sérsic n < 1.5 generally has at least 80% of its light from a disk component. Likewise, "bulge-dominated" galaxies with n > 4 typically derive at least 70% of their total host galaxy light from a bulge, but this number can be as low as 55%. Single-component Sérsic fits to an AGN host galaxy are statistically very reliable to z < 1.25 (for ACS survey data like ours). In contrast, two-component fits involving separate bulge and disk components tend to overestimate the bulge fraction by ~10%, with uncertainty of order 50%.

U2 - 10.1086/589827

DO - 10.1086/589827

M3 - Journal article

VL - 683

SP - 644

EP - 658

JO - The Astrophysical Journal

JF - The Astrophysical Journal

SN - 0004-637X

IS - 2

ER -