First M87 Even Horizon Telescope results. II. Array and instrumentation
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Date
Authors
Akiyama, Kazunori
Alberdi, Antxon
Alef, Walter
Asada, Keiichi
Azulay, Rebecca
Baczko, Anne-Kathrin
Ball, David
Balokovic, Mislav
Barrett, John
Bintley, Dan
Journal Title
Journal ISSN
Volume Title
Publisher
IOP Publishing
Abstract
The Event Horizon Telescope (EHT) is a very long baseline interferometry (VLBI) array that comprises
millimeter- and submillimeter-wavelength telescopes separated by distances comparable to the diameter of the
Earth. At a nominal operating wavelength of ∼1.3 mm, EHT angular resolution (λ/D) is ∼25 μas, which is
sufficient to resolve nearby supermassive black hole candidates on spatial and temporal scales that correspond to
their event horizons. With this capability, the EHT scientific goals are to probe general relativistic effects in the
strong-field regime and to study accretion and relativistic jet formation near the black hole boundary. In this Letter
we describe the system design of the EHT, detail the technology and instrumentation that enable observations, and
provide measures of its performance. Meeting the EHT science objectives has required several key developments
that have facilitated the robust extension of the VLBI technique to EHT observing wavelengths and the production
of instrumentation that can be deployed on a heterogeneous array of existing telescopes and facilities. To meet
sensitivity requirements, high-bandwidth digital systems were developed that process data at rates of
64gigabit s−1, exceeding those of currently operating cm-wavelength VLBI arrays by more than an order of
magnitude. Associated improvements include the development of phasing systems at array facilities, new receiver
installation at several sites, and the deployment of hydrogen maser frequency standards to ensure coherent data
capture across the array. These efforts led to the coordination and execution of the first Global EHT observations in
2017 April, and to event-horizon-scale imaging of the supermassive black hole candidate in M87.
Description
Keywords
Black hole physics, Galaxies: individual (M87), Galaxy: center, Gravitational lensing: strong, Instrumentation: interferometers, Techniques: high angular resolution, Event Horizon Telescope (EHT), Very long baseline interferometry (VLBI)
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Citation
Akiyama K., Alberdi A., Alef W. et al. First M87 Even Horizon Telescope results. II.
Array and instrumentation', Astrophysical Journal Letters, vol. 875, no. L2, pp. 1-28.