The Hubble Space Telescope Cluster Supernova Survey: II. The Type Ia Supernova Rate in High-Redshift Galaxy Clusters
K. Barbary, G. Aldering, R. Amanullah, M. Brodwin, N. Connolly, K. S., Dawson, M. Doi, P. Eisenhardt, L. Faccioli, V. Fadeyev, H. K. Fakhouri, A. S., Fruchter, D. G. Gilbank, M. D. Gladders, G. Goldhaber, A. Goobar, T. Hattori,, E. Hsiao, X. Huang, Y. Ihara, N. Kashikawa

TL;DR
This study measures the rate of Type Ia supernovae in high-redshift galaxy clusters using HST data, revealing a significant increase compared to lower redshifts and providing insights into supernova delay times and progenitor scenarios.
Contribution
First measurement of SN Ia rate in galaxy clusters at z > 0.9, constraining delay time distribution and progenitor models with new high-redshift data.
Findings
SN Ia rate at z~1 is about 5 times higher than at z<0.2.
Delay time distribution consistent with double degenerate scenario.
Intra-cluster star fraction is less than 47% at 95% confidence.
Abstract
We report a measurement of the Type Ia supernova (SN Ia) rate in galaxy clusters at 0.9 < z < 1.45 from the Hubble Space Telescope (HST) Cluster Supernova Survey. This is the first cluster SN Ia rate measurement with detected z > 0.9 SNe. Finding 8 +/- 1 cluster SNe Ia, we determine a SN Ia rate of 0.50 +0.23-0.19 (stat) +0.10-0.09 (sys) SNuB (SNuB = 10^-12 SNe L_{sun,B}^-1 yr^-1). In units of stellar mass, this translates to 0.36 +0.16-0.13 (stat) +0.07-0.06 (sys) SNuM (SNuM = 10^-12 SNe M_sun^-1 yr^-1). This represents a factor of approximately 5 +/- 2 increase over measurements of the cluster rate at z < 0.2. We parameterize the late-time SN Ia delay time distribution with a power law (proportional to t^s). Under the assumption of a cluster formation redshift of z_f = 3, our rate measurement in combination with lower-redshift cluster SN Ia rates constrains s = -1.41 +0.47/-0.40,…
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