A Fully Automated Integral Field Spectrograph Pipeline for the SEDMachine: pysedm
arXiv:1902.08526 · doi:10.1051/0004-6361/201935344
Abstract
Current time domain facilities are discovering hundreds of new galactic and extra-galactic transients every week. Classifying the ever-increasing number of transients is challenging, yet crucial to further our understanding of their nature, discover new classes, or ensuring sample purity, for instance, for Supernova Ia cosmology. The Zwicky Transient Facility is one example of such a survey. In addition, it has a dedicated very-low resolution spectrograph, the SEDMachine, operating on the Palomar 60-inch telescope. This spectrograph's primary aim is object classification. In practice most, if not all, transients of interest brighter than ~19 mag are typed. This corresponds to approximately 10 to 15 targets a night. In this paper, we present a fully automated pipeline for the SEDMachine. This pipeline has been designed to be fast, robust, stable and extremely flexible. pysedm enables the fully automated spectral extraction of a targeted point source object in less than 5 minutes after the end of the exposure. The spectral color calibration is accurate at the few percent level. In the 19 weeks since pysedm entered production in early August of 2018, we have classified, among other objects, about 400 Type Ia supernovae and 140 Type II supernovae. We conclude that low resolution, fully automated spectrographs such as the `SEDMachine with pysedm' installed on 2-m class telescopes within the southern hemisphere could allow us to automatically and simultaneously type and obtain a redshift for most (if not all) bright transients detected by LSST within z<0.2, notably potentially all Type Ia Supernovae. In comparison to the current SEDM design, this would require higher spectral resolution (R~1000) and slightly improved throughput. With this perspective in mind, pysedm has been designed to easily be adaptable to any IFU-like spectrograph (see https://github.com/MickaelRigault/pysedm).
Submitted to Astronomy and Astrophysics
References in corpus (5)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- Determining the Type, Redshift, and Age of a Supernova Spectrum
- PESSTO : survey description and products from the first data release by the Public ESO Spectroscopic Survey of Transient Objects
- The Sloan Digital Sky Survey-II Supernova Survey: Search Algorithm and Follow-up Observations
- Photometric classification of type Ia supernovae in the SuperNova Legacy Survey with supervised learning
Cited by in corpus (17)
- A very luminous jet from the disruption of a star by a massive black hole
- ZTF Early Observations of Type Ia Supernovae I: Properties of the 2018 Sample
- Palomar Gattini-IR: Survey overview, data processing system, on-sky performance and first results
- New Modules for the SEDMachine to Remove Contaminations from Cosmic Rays and Non-target Light: BYECR and CONTSEP
- A Systematic Study of Ia-CSM Supernovae from the ZTF Bright Transient Survey
- SN 2021zny: an early flux excess combined with late-time oxygen emission suggests a double white dwarf merger event
- The double-peaked type Ic Supernova 2019cad: another SN 2005bf-like object
- SN 2018gjx reveals that some SNe Ibn are SNe IIb exploding in dense circumstellar material
- The Zwicky Transient Facility phase I sample of hydrogen-rich superluminous supernovae without strong narrow emission lines
- Low luminosity Type II supernovae III. SN 2018hwm, a faint event with an unusually long plateau
- Spectroscopic observations of progenitor activity 100 days before a Type Ibn supernova
- Supernova Siblings and their Parent Galaxies in the Zwicky Transient Facility Bright Transient Surve
- SN 2022joj: A Peculiar Type Ia Supernova Possibly Driven by an Asymmetric Helium-shell Double Detonation
- HO Puppis: Not a Be Star but a Newly Confirmed IW And-Type Star
- Early-time spectroscopic modelling of the transitional Type Ia Supernova 2021rhu with TARDIS
- The automation of optical transient discovery and classification in Rubin-era time-domain astronomy
- Faintest of them all : ZTF 21aaoryiz/SN 2021fcg -- Discovery of an extremely low luminosity type Iax supernova