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The HST See Change Program. I. Survey Design, Pipeline, and Supernova Discoveries*

Chappell Greta; Saunders Clare; Rykoff Eli; Rubin David; Dixon Sam; Nordin Jacob; Meyers Joshua E; Gonzalez Anthony; Luther Kyle; Stanford Adam; Hoekstra Henk; Currie Miles; Perlmutter Saul; Muzzin Adam; Wechsler Risa; and The Supernova Cosmology Project; Jee M James; Yen Mike K; Hayden Brian; Spadafora Anthony; Lidman Chris; Eisenhardt Peter; Brodwin Mark; Goobar Ariel; Aldering Greg; Santos Joana; Cunha Carlos; Hook Isobel; Williams Steven C; Kowalski Marek; Webb Tracy; Rozo Eduardo; Kim Alex; Amanullah Rahman; Linder Eric; Fruchter Andy; Huang Xiaosheng; Deustua Susana; Pain Reynald; Hildebrandt Hendrik; Richard Johan; Gupta Ravi; Fagrelius Parker; Huterer Dragan; Barbary Kyle; Rosati Piero; Suzuki Nao; Stern Daniel; Boone Kyle; Raha Zachary; Fassbender Rene; Ruiz-Lapuente Pilar; Böhringer Hans; Sofiatti Caroline; Wilson Gillian; Gladders Michael

The HST See Change Program. I. Survey Design, Pipeline, and Supernova Discoveries*

Chappell Greta
Saunders Clare
Rykoff Eli
Rubin David
Dixon Sam
Nordin Jacob
Meyers Joshua E
Gonzalez Anthony
Luther Kyle
Stanford Adam
Hoekstra Henk
Currie Miles
Perlmutter Saul
Muzzin Adam
Wechsler Risa; and The Supernova Cosmology Project
Jee M James
Yen Mike K
Hayden Brian
Spadafora Anthony
Lidman Chris
Eisenhardt Peter
Brodwin Mark
Goobar Ariel
Aldering Greg
Santos Joana
Cunha Carlos
Hook Isobel
Williams Steven C
Kowalski Marek
Webb Tracy
Rozo Eduardo
Kim Alex
Amanullah Rahman
Linder Eric
Fruchter Andy
Huang Xiaosheng
Deustua Susana
Pain Reynald
Hildebrandt Hendrik
Richard Johan
Gupta Ravi
Fagrelius Parker
Huterer Dragan
Barbary Kyle
Rosati Piero
Suzuki Nao
Stern Daniel
Boone Kyle
Raha Zachary
Fassbender Rene
Ruiz-Lapuente Pilar
Böhringer Hans
Sofiatti Caroline
Wilson Gillian
Gladders Michael
Katso/Avaa
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IOP PUBLISHING LTD
doi:10.3847/1538-4357/abed4d
Näytä kaikki kuvailutiedot
Julkaisun pysyvä osoite on:
https://urn.fi/URN:NBN:fi-fe2021093048163
Tiivistelmä

The See Change survey was designed to make z > 1 cosmological measurements by efficiently discovering high-redshift Type Ia supernovae (SNe Ia) and improving cluster mass measurements through weak lensing. This survey observed twelve galaxy clusters with the Hubble Space Telescope (HST) spanning the redshift range z = 1.13-1.75, discovering 57 likely transients and 27 likely SNe Ia at z similar to 0.8-2.3. As in similar previous surveys, this proved to be a highly efficient use of HST for supernova observations; the See Change survey additionally tested the feasibility of maintaining, or further increasing, the efficiency at yet higher redshifts, where we have less detailed information on the expected cluster masses and star formation rates. We find that the resulting number of SNe Ia per orbit is a factor of similar to 8 higher than for a field search, and 45% of our orbits contained an active SN Ia within 22 rest-frame days of peak, with one of the clusters by itself yielding 6 of the SNe Ia. We present the survey design, pipeline, and supernova discoveries. Novel features include fully blinded supernova searches, the first random forest candidate classifier for undersampled IR data (with a 50% detection threshold within 0.05 mag of human searchers), real-time forward-modeling photometry of candidates, and semi-automated photometric classifications and follow-up forecasts. We also describe the spectroscopic follow-up, instrumental in measuring host galaxy redshifts. The cosmology analysis of our sample will be presented in a companion paper.

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