Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey

We use the shear catalogue from the CFHT Stripe-82 Survey to measure the subhalo masses of satellite galaxies in redMaPPer clusters. Assuming a Chabrier initial mass function and a truncated NFW model for the subhalo mass distribution, we find that the subhalo mass to galaxy stellar mass ratio incre...

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Main Authors: Li, Ran, Shan, Huanyuan, Kneib, Jean-Paul, Mo, Houjun, Rozo, Eduardo, Leauthaud, Alexie, Moustakas, John, Xie, Lizhi, Erben, Thomas, Van Waerbeke, Ludovic, Makler, Martin, Rykoff, Eli, Moraes, Bruno
Other Authors: Univ Arizona, Dept Phys
Language:en
Published: OXFORD UNIV PRESS 2016
Subjects:
Online Access:http://hdl.handle.net/10150/614749
http://arizona.openrepository.com/arizona/handle/10150/614749
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6147492016-06-26T03:01:59Z Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey Li, Ran Shan, Huanyuan Kneib, Jean-Paul Mo, Houjun Rozo, Eduardo Leauthaud, Alexie Moustakas, John Xie, Lizhi Erben, Thomas Van Waerbeke, Ludovic Makler, Martin Rykoff, Eli Moraes, Bruno Univ Arizona, Dept Phys gravitational lensing: weak methods: data analysis galaxies: haloes galaxies: statistics dark matter We use the shear catalogue from the CFHT Stripe-82 Survey to measure the subhalo masses of satellite galaxies in redMaPPer clusters. Assuming a Chabrier initial mass function and a truncated NFW model for the subhalo mass distribution, we find that the subhalo mass to galaxy stellar mass ratio increases as a function of projected halo-centric radius r(p), from M-sub/M-star = 4.43(-2.23)(+6.63) at r(p) is an element of [0.1, 0.3] h(-1) Mpc toM(sub)/M-star = 75.40(-19.09)(+19.73) at r(p) is an element of [0.6, 0.9] h(-1) Mpc. We also investigate the dependence of subhalo masses on stellar mass by splitting satellite galaxies into two stellar mass bins: 10 < log (M-star/h(-1) M-circle dot) < 10.5 and 11 < log (M-star/h(-1) M-circle dot) < 12. The best-fitting subhalomass of the more massive satellite galaxy bin is larger than that of the lessmassive satellites: log(M-sub/h(-1) M-circle dot) = 11.14(-0.73)(+0.66) (M-sub/M-star = 19.5(-17.9)(+19.8)) versus log(M-sub/h(-1) M-circle dot) = 12.38(-0.16)(+0.16) (M-sub/M-star = 21.1(-7.7)(+7.4)). 2016-05-21 Article Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey 2016, 458 (3):2573 Monthly Notices of the Royal Astronomical Society 0035-8711 1365-2966 10.1093/mnras/stw494 http://hdl.handle.net/10150/614749 http://arizona.openrepository.com/arizona/handle/10150/614749 Monthly Notices of the Royal Astronomical Society en http://mnras.oxfordjournals.org/lookup/doi/10.1093/mnras/stw494 © 2016 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society. OXFORD UNIV PRESS
collection NDLTD
language en
sources NDLTD
topic gravitational lensing: weak
methods: data analysis
galaxies: haloes
galaxies: statistics
dark matter
spellingShingle gravitational lensing: weak
methods: data analysis
galaxies: haloes
galaxies: statistics
dark matter
Li, Ran
Shan, Huanyuan
Kneib, Jean-Paul
Mo, Houjun
Rozo, Eduardo
Leauthaud, Alexie
Moustakas, John
Xie, Lizhi
Erben, Thomas
Van Waerbeke, Ludovic
Makler, Martin
Rykoff, Eli
Moraes, Bruno
Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey
description We use the shear catalogue from the CFHT Stripe-82 Survey to measure the subhalo masses of satellite galaxies in redMaPPer clusters. Assuming a Chabrier initial mass function and a truncated NFW model for the subhalo mass distribution, we find that the subhalo mass to galaxy stellar mass ratio increases as a function of projected halo-centric radius r(p), from M-sub/M-star = 4.43(-2.23)(+6.63) at r(p) is an element of [0.1, 0.3] h(-1) Mpc toM(sub)/M-star = 75.40(-19.09)(+19.73) at r(p) is an element of [0.6, 0.9] h(-1) Mpc. We also investigate the dependence of subhalo masses on stellar mass by splitting satellite galaxies into two stellar mass bins: 10 < log (M-star/h(-1) M-circle dot) < 10.5 and 11 < log (M-star/h(-1) M-circle dot) < 12. The best-fitting subhalomass of the more massive satellite galaxy bin is larger than that of the lessmassive satellites: log(M-sub/h(-1) M-circle dot) = 11.14(-0.73)(+0.66) (M-sub/M-star = 19.5(-17.9)(+19.8)) versus log(M-sub/h(-1) M-circle dot) = 12.38(-0.16)(+0.16) (M-sub/M-star = 21.1(-7.7)(+7.4)).
author2 Univ Arizona, Dept Phys
author_facet Univ Arizona, Dept Phys
Li, Ran
Shan, Huanyuan
Kneib, Jean-Paul
Mo, Houjun
Rozo, Eduardo
Leauthaud, Alexie
Moustakas, John
Xie, Lizhi
Erben, Thomas
Van Waerbeke, Ludovic
Makler, Martin
Rykoff, Eli
Moraes, Bruno
author Li, Ran
Shan, Huanyuan
Kneib, Jean-Paul
Mo, Houjun
Rozo, Eduardo
Leauthaud, Alexie
Moustakas, John
Xie, Lizhi
Erben, Thomas
Van Waerbeke, Ludovic
Makler, Martin
Rykoff, Eli
Moraes, Bruno
author_sort Li, Ran
title Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey
title_short Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey
title_full Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey
title_fullStr Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey
title_full_unstemmed Measuring subhalo mass in redMaPPer clusters with CFHT Stripe 82 Survey
title_sort measuring subhalo mass in redmapper clusters with cfht stripe 82 survey
publisher OXFORD UNIV PRESS
publishDate 2016
url http://hdl.handle.net/10150/614749
http://arizona.openrepository.com/arizona/handle/10150/614749
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