A clock stabilization system for CHIME/FRB Outriggers
arXiv:2110.00576 · doi:10.3847/1538-3881/ac397a
Abstract
The Canadian Hydrogen Intensity Mapping Experiment (CHIME) has emerged as the prime telescope for detecting fast radio bursts (FRBs). CHIME/FRB Outriggers will be a dedicated very-long-baseline interferometry (VLBI) instrument consisting of outrigger telescopes at continental baselines working with CHIME and its specialized real-time transient-search backend (CHIME/FRB) to detect and localize FRBs with 50 mas precision. In this paper we present a minimally invasive clock stabilization system that effectively transfers the CHIME digital backend reference clock from its original GPS-disciplined ovenized crystal oscillator to a passive hydrogen maser. This enables us to combine the long-term stability and absolute time tagging of the GPS clock with the short and intermediate-term stability of the maser to reduce the clock timing errors between VLBI calibration observations. We validate the system with VLBI-style observations of Cygnus A over a 400 m baseline between CHIME and the CHIME Pathfinder, demonstrating agreement between sky-based and maser-based timing measurements at the 30 ps rms level on timescales ranging from one minute to up to nine days, and meeting the stability requirements for CHIME/FRB Outriggers. In addition, we present an alternate reference clock solution for outrigger stations which lack the infrastructure to support a passive hydrogen maser.
15 pages, 7 figures, submitted to AJ
References in corpus (14)
- A bright millisecond radio burst of extragalactic origin
- First M87 Event Horizon Telescope Results. II. Array and Instrumentation
- A Second Source of Repeating Fast Radio Bursts
- Nine New Repeating Fast Radio Burst Sources from CHIME/FRB
- A nearby repeating fast radio burst in the direction of M81
- Fast Radio Burst Morphology in the First CHIME/FRB Catalog
- Canadian Hydrogen Intensity Mapping Experiment (CHIME) Pathfinder
- A Local Universe Host for the Repeating Fast Radio Burst FRB 20181030A
- LBCS: the LOFAR Long-Baseline Calibrator Survey
- CHIME/FRB Catalog 1 results: statistical cross-correlations with large-scale structure
- The ALMA Phasing System: A Beamforming Capability for Ultra-High-Resolution Science at (Sub)Millimeter Wavelengths
- The LOFAR long baseline snapshot calibrator survey
- No Evidence for Galactic Latitude Dependence of the Fast Radio Burst Sky Distribution
- A Review of Contemporary Atomic Frequency Standards
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- Cosmology with fast radio bursts in the era of SKA
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- A method for reconstructing the Galactic magnetic field using dispersion of fast radio bursts and Faraday rotation of radio galaxies
- Constraining the Hubble constant with scattering in host galaxies of fast radio bursts
- TONE: A CHIME/FRB Outrigger Pathfinder for localizations of Fast Radio Bursts using Very Long Baseline Interferometry
- A Digital Calibration Source for 21cm Cosmology Telescopes