First very long baseline interferometry detections at 870μm
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Date
Authors
Raymond, Alexander W.
Doeleman, Sheperd S.
Asada, Keiichi
Blackburn, Lindy
Bower, Geoffrey C.
Bremer, Michael
Broguiere, Dominique
Chen, Ming-Tang
Crew, Geoffrey B.
Dornbusch, Sven
Journal Title
Journal ISSN
Volume Title
Publisher
American Astronomical Society
Abstract
The first very long baseline interferometry (VLBI) detections at 870 μm wavelength (345 GHz frequency) are
reported, achieving the highest diffraction-limited angular resolution yet obtained from the surface of the Earth and
the highest-frequency example of the VLBI technique to date. These include strong detections for multiple sources
observed on intercontinental baselines between telescopes in Chile, Hawaii, and Spain, obtained during
observations in 2018 October. The longest-baseline detections approach 11 Gλ, corresponding to an angular
resolution, or fringe spacing, of 19 μas. The Allan deviation of the visibility phase at 870 μm is comparable to that
at 1.3 mm on the relevant integration timescales between 2 and 100 s. The detections confirm that the sensitivity
and signal chain stability of stations in the Event Horizon Telescope (EHT) array are suitable for VLBI
observations at 870 μm. Operation at this short wavelength, combined with anticipated enhancements of the EHT,
will lead to a unique high angular resolution instrument for black hole studies, capable of resolving the event
horizons of supermassive black holes in both space and time.
Description
Keywords
Angular resolution, Event Horizon Telescope (EHT), Very long baseline interferometry (VLBI), Radio interferometry, Black holes, Supermassive black holes, High angular resolution, Astronomical techniques, Event horizons
Sustainable Development Goals
None
Citation
Raymond, A.W., Doeleman, S.S., Asada, K. et al. 2024, 'First very long baseline interferometry detections at 870μm', Astronomical Journal, vol. 168, art. 130, pp. 1-19, doi : 10.3847/1538-3881/ad5bdb.
