TONE: A CHIME/FRB Outrigger Pathfinder for localizations of Fast Radio Bursts using Very Long Baseline Interferometry

Fuente: arXiv
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Autores principales: Sanghavi, Pranav, Leung, Calvin, Bandura, Kevin, Cassanelli, Tomas, Kaczmarek, Jane, Kaspi, Victoria M., Khairy, Kholoud, Lanman, Adam, Lazda, Mattias, Masui, Kiyoshi W., Mena-Parra, Juan, Michilli, Daniele, Pen, Ue-Li, Peterson, Jeffrey B., Rahman, Mubdi, Shah, Vishwangi
Formato: Preprint
Publicado: 2023
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author Sanghavi, Pranav
Leung, Calvin
Bandura, Kevin
Cassanelli, Tomas
Kaczmarek, Jane
Kaspi, Victoria M.
Khairy, Kholoud
Lanman, Adam
Lazda, Mattias
Masui, Kiyoshi W.
Mena-Parra, Juan
Michilli, Daniele
Pen, Ue-Li
Peterson, Jeffrey B.
Rahman, Mubdi
Shah, Vishwangi
author_facet Sanghavi, Pranav
Leung, Calvin
Bandura, Kevin
Cassanelli, Tomas
Kaczmarek, Jane
Kaspi, Victoria M.
Khairy, Kholoud
Lanman, Adam
Lazda, Mattias
Masui, Kiyoshi W.
Mena-Parra, Juan
Michilli, Daniele
Pen, Ue-Li
Peterson, Jeffrey B.
Rahman, Mubdi
Shah, Vishwangi
contents The sensitivity and field of view of the Canadian Hydrogen Intensity Mapping Experiment (CHIME) has enabled its fast radio burst (FRB) backend to detect thousands of FRBs. However, the low angular resolution of CHIME prevents it from localizing most FRBs to their host galaxies. Very long baseline interferometry (VLBI) can readily provide the subarcsecond resolution needed to localize many FRBs to their hosts. Thus we developed TONE: an interferometric array of eight $6~\mathrm{m}$ dishes to serve as a pathfinder for the CHIME/FRB Outriggers project, which will use wide field of view cylinders to determine the sky positions for a large sample of FRBs, revealing their positions within their host galaxies to subarcsecond precision. In the meantime, TONE's $\sim3333~\mathrm{km}$ baseline with CHIME proves to be an excellent testbed for the development and characterization of single-pulse VLBI techniques at the time of discovery. This work describes the TONE instrument, its sensitivity, and its astrometric precision in single-pulse VLBI. We believe that our astrometric errors are dominated by uncertainties in the clock measurements which build up between successive Crab pulsar calibrations which happen every $\approx 24~\mathrm{h}$; the wider fields of view and higher sensitivity of the Outriggers will provide opportunities for higher-cadence calibration. At present, CHIME-TONE localizations of the Crab pulsar yield systematic localization errors of ${0.1}-{0.2}~\mathrm{arcsec}$ - comparable to the resolution afforded by state-of-the-art optical instruments ($\sim 0.05 ~\mathrm{arcsec}$).
format Preprint
id arxiv_https___arxiv_org_abs_2304_10534
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle TONE: A CHIME/FRB Outrigger Pathfinder for localizations of Fast Radio Bursts using Very Long Baseline Interferometry
Sanghavi, Pranav
Leung, Calvin
Bandura, Kevin
Cassanelli, Tomas
Kaczmarek, Jane
Kaspi, Victoria M.
Khairy, Kholoud
Lanman, Adam
Lazda, Mattias
Masui, Kiyoshi W.
Mena-Parra, Juan
Michilli, Daniele
Pen, Ue-Li
Peterson, Jeffrey B.
Rahman, Mubdi
Shah, Vishwangi
Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
The sensitivity and field of view of the Canadian Hydrogen Intensity Mapping Experiment (CHIME) has enabled its fast radio burst (FRB) backend to detect thousands of FRBs. However, the low angular resolution of CHIME prevents it from localizing most FRBs to their host galaxies. Very long baseline interferometry (VLBI) can readily provide the subarcsecond resolution needed to localize many FRBs to their hosts. Thus we developed TONE: an interferometric array of eight $6~\mathrm{m}$ dishes to serve as a pathfinder for the CHIME/FRB Outriggers project, which will use wide field of view cylinders to determine the sky positions for a large sample of FRBs, revealing their positions within their host galaxies to subarcsecond precision. In the meantime, TONE's $\sim3333~\mathrm{km}$ baseline with CHIME proves to be an excellent testbed for the development and characterization of single-pulse VLBI techniques at the time of discovery. This work describes the TONE instrument, its sensitivity, and its astrometric precision in single-pulse VLBI. We believe that our astrometric errors are dominated by uncertainties in the clock measurements which build up between successive Crab pulsar calibrations which happen every $\approx 24~\mathrm{h}$; the wider fields of view and higher sensitivity of the Outriggers will provide opportunities for higher-cadence calibration. At present, CHIME-TONE localizations of the Crab pulsar yield systematic localization errors of ${0.1}-{0.2}~\mathrm{arcsec}$ - comparable to the resolution afforded by state-of-the-art optical instruments ($\sim 0.05 ~\mathrm{arcsec}$).
title TONE: A CHIME/FRB Outrigger Pathfinder for localizations of Fast Radio Bursts using Very Long Baseline Interferometry
topic Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2304.10534