Low-Cost Access to the Deep, High-Cadence Sky: the Argus Optical Array
arXiv:2107.00664 · doi:10.1088/1538-3873/ac4811
Abstract
New mass-produced, wide-field, small-aperture telescopes have the potential to revolutionize ground-based astronomy by greatly reducing the cost of collecting area. In this paper, we introduce a new class of large telescope based on these advances: an all-sky, arcsecond-resolution, 1000-telescope array which builds a simultaneously high-cadence and deep survey by observing the entire sky all night. As a concrete example, we describe the Argus Array, a 5m-class telescope with an all-sky field of view and the ability to reach extremely high cadences using low-noise CMOS detectors. Each 55 GPix Argus exposure covers 20% of the entire sky to g=19.6 each minute and g=21.9 each hour; a high-speed mode will allow sub-second survey cadences for short times. Deep coadds will reach g=23.6 every five nights over 47% of the sky; a larger-aperture array telescope, with an étendue close to the Rubin Observatory, could reach g=24.3 in five nights. These arrays can build two-color, million-epoch movies of the sky, enabling sensitive and rapid searches for high-speed transients, fast-radio-burst counterparts, gravitational-wave counterparts, exoplanet microlensing events, occultations by distant solar system bodies, and myriad other phenomena. An array of O(1,000) telescopes, however, would be one of the most complex astronomical instruments yet built. Standard arrays with hundreds of tracking mounts entail thousands of moving parts and exposed optics, and maintenance costs would rapidly outpace the mass-produced-hardware cost savings compared to a monolithic large telescope. We discuss how to greatly reduce operations costs by placing all optics in a thermally controlled, sealed dome with a single moving part. Coupled with careful software scope control and use of existing pipelines, we show that the Argus Array could become the deepest and fastest Northern sky survey, with total costs below $20M.
17 pages, 5 figures, 2 tables
References in corpus (28)
- The Gaia mission
- The Transiting Exoplanet Survey Satellite
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- The direct localization of a fast radio burst and its host
- The discovery of the electromagnetic counterpart of GW170817: kilonova AT 2017gfo/DLT17ck
- The Low Earth Orbit Satellite Population and Impacts of the SpaceX Starlink Constellation
- Fast radio bursts as synchrotron maser emission from decelerating relativistic blast waves
- A repeating fast radio burst source localised to a nearby spiral galaxy
- A single fast radio burst localized to a massive galaxy at cosmological distance
- A Wolf-Rayet-like progenitor of supernova SN 2013cu from spectral observations of a wind
- A fast radio burst localised to a massive galaxy
- A Giant Planet Candidate Transiting a White Dwarf
- Evryscope science: exploring the potential of all-sky gigapixel-scale telescopes
- First demonstration of early warning gravitational wave alerts
- The occurrence of planets and other substellar bodies around white dwarfs using K2
- Building the Evryscope: Hardware Design and Performance
- Orbital Foregrounds for Ultra-Short Duration Transients
- Detections and Constraints on White Dwarf Variability from Time-Series GALEX Observations
- Seeing-limited imaging sky surveys -- small vs. large telescopes
- Kojima-1Lb Is a Mildly Cold Neptune around the Brightest Microlensing Host Star
- Discovery of a Very Bright, Nearby Gravitational Microlensing Event
- Organized Autotelescopes for Serendipitous Event Survey (OASES): design and performance
- Near-Field Microlensing from Wide-Field Surveys
- Habitable Zone Boundaries for Circumbinary Planets
- Pipeline for the Detection of Serendipitous Stellar Occultations by Kuiper Belt Objects with the Colibri Fast-Photometry Array
- The Weizmann Fast Astronomical Survey Telescope (W-FAST): System Overview
- High Cadence Optical Transient Searches using Drift Scan Imaging II: Event Rate Upper Limits on Optical Transients of Duration <21 ms and Magnitude <6.6
- Ground-based variability surveys towards Centaurus A: worthwhile or not?
Cited by in corpus (10)
- Scientific CMOS sensors in Astronomy: IMX455 and IMX411
- The Large Array Survey Telescope -- System Overview and Performances
- Introducing the Condor Array Telescope. 1. Motivation, Configuration, and Performance
- The Evryscope Fast Transient Engine: Real-Time Detection for Rapidly Evolving Transients
- Searching for Gravitational-Wave Counterparts using the Transiting Exoplanet Survey Satellite
- The Rise of Nova V1674 Herculis
- Sensitivity to Sub-Io-sized Exosatellite Transits in the MIRI LRS Lightcurve of the Nearest Substellar Worlds
- Detecting the early optical flashes of gamma-ray bursts with small telescope arrays
- A search for photometric variability towards the globular cluster M3 with the TWenty Inch Survey Telescope
- Single object observations: Large telescopes vs. multiple small telescopes