The Multi-Epoch Nearby Cluster Survey: type Ia supernova rate measurement in z~0.1 clusters and the late-time delay time distribution
David J. Sand, Melissa L. Graham, Chris Bildfell, Dennis Zaritsky,, Chris Pritchet, Henk Hoekstra, Dennis W. Just, St\'ephane Herbert-Fort,, Suresh Sivanandam, Ryan Foley, Andisheh Mahdavi

TL;DR
This study measures the Type Ia supernova rate in galaxy clusters at z~0.1, derives the late-time delay time distribution, and compares findings with progenitor scenario predictions, providing insights into supernova origins.
Contribution
It presents the first measurement of SN Ia rates in galaxy clusters at z~0.1 and constrains the late-time delay time distribution, supporting the double degenerate progenitor scenario.
Findings
SN Ia rate within R_{200} is approximately 0.042 SNuM.
The late-time delay time distribution slope is s=-1.62±0.54.
Results support the double degenerate progenitor scenario.
Abstract
We describe the Multi-Epoch Nearby Cluster Survey (MENeaCS), designed to measure the cluster Type Ia supernova (SN Ia) rate in a sample of 57 X-ray selected galaxy clusters, with redshifts of 0.05 < z < 0.15. Utilizing our real time analysis pipeline, we spectroscopically confirmed twenty-three cluster SN Ia, four of which were intracluster events. Using our deep CFHT/Megacam imaging, we measured total stellar luminosities in each of our galaxy clusters, and we performed detailed supernova detection efficiency simulations. Bringing these ingredients together, we measure an overall cluster SN Ia rate within R_{200} (1 Mpc) of 0.042^{+0.012}_{-0.010}^{+0.010}_{-0.008} SNuM (0.049^{+0.016}_{-0.014}^{+0.005}_{-0.004} SNuM) and a SN Ia rate within red sequence galaxies of 0.041^{+0.015}_{-0.015}^{+0.005}_{-0.010} SNuM (0.041^{+0.019}_{-0.015}^{+0.005}_{-0.004} SNuM). The red sequence SN Ia…
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