The Power of Simultaneous Multi-Frequency Observations for mm-VLBI: Astrometry up to 130 GHz with the KVN
arXiv:1509.02621 · doi:10.1088/0004-6256/150/6/202
Abstract
Simultaneous observations at multiple frequency bands have the potential to overcome the fundamental limitation imposed by the atmospheric propagation in mm-VLBI observations. The propagation effects place a severe limit in the sensitivity achievable in mm-VLBI, reducing the time over which the signals can be coherently combined, and preventing the use of phase referencing and astrometric measurements. We carried out simultaneous observations at 22, 43, 87 and 130 GHz of a group of five AGNs, the weakest of which is ca. 200 mJy at 130 GHz, with angular separations ranging from 3.6 to 11 degrees, using the KVN. We analysed this data using the Frequency Phase Transfer (FPT) and the Source Frequency Phase Referencing (SFPR) techniques, which use the observations at a lower frequency to correct those at a higher frequency. The results of the analysis provide an empirical demonstration of the increase in the coherence times at 130 GHz from a few tens of seconds to about twenty minutes, with FPT, and up to many hours with SFPR. Moreover the astrometric analysis provides high precision relative position measurements between two frequencies, including, for the first time, astrometry at 130 GHz. Finally we demonstrate a method for the generalised decomposition of the relative position measurements into absolute position shifts for bona fide astrometric registration of the maps of the individual sources at multiple frequencies, up to 130 GHz.
Accepted for Publication in AJ
References in corpus (8)
- Event-horizon-scale structure in the supermassive black hole candidate at the Galactic Centre
- Micro-Arcsecond Radio Astrometry
- A Global 86GHz VLBI Survey of Compact Radio Sources
- MOJAVE: Monitoring of Jets in Active Galactic Nuclei with VLBA Experiments. XI. Spectral distributions
- Aligning VLBI Images of Active Galactic Nuclei at Different Frequencies
- Verification of the Astrometric Performance of the Korean VLBI Network, using comparative SFPR studies with the VLBA at 14/7 mm
- Astrometrically Registered Simultaneous Observations of the 22 GHz HO and the 43GHz SiO masers towards R Leonis Minoris using KVN and Source/Frequency Phase Referencing
- Absolute kinematics of radio source components in the complete S5 polar cap sample. III. First wide-field high-precision astrometry at 15.4 GHz
Cited by in corpus (19)
- Universal Interferometric Signatures of a Black Hole's Photon Ring
- The Black Hole Explorer: Motivation and Vision
- Precise radio astrometry and new developments for the next generation of instruments
- The Transformational Power of Frequency Phase Transfer Methods for ngEHT
- High-precision Astrometric Millimeter Very Long Baseline Interferometry Using a New Method for Multi-Frequency Calibration
- Enabling Transformational ngEHT Science via the Inclusion of 86 GHz Capabilities
- The Power of Simultaneous Multi-frequency Observations for mm-VLBI: Beyond Frequency Phase Transfer
- Korean VLBI Network Calibrator Survey (KVNCS): 1. Source Catalog Of KVN Single Dish Flux Density Measurement In The K And Q Bands
- An International Survey of Front-End Receivers and Observing Performance of Telescopes for Radio Astronomy
- Measuring Black Hole Light Echoes with Very Long Baseline Interferometry
- The Science Case for Simultaneous mm-Wavelength Receivers in Radio Astronomy
- Registration of HO and SiO masers in the Calabash Nebula, to confirm the Planetary Nebula paradigm
- Absolute kinematics of radio-source components in the complete S5 polar cap sample. IV. Proper motions of the radio cores over a decade and spectral properties
- ALMA High-frequency Long-baseline Campaign in 2017: A Comparison of the Band-to-band and In-band Phase Calibration Techniques and Phase-calibrator Separation Angles
- The Haystack Telescope as an Astronomical Instrument
- Receivers for the Black Hole Explorer (BHEX) Mission
- A High-frequency Geodetic VLBI Experiment for Optical Clock Comparison
- Optical frequency comb integration in radio telescopes: advancing signal generation and phase calibration
- Shared-optical-path VLBI frequency phase transfer from 86 to 258 GHz on an 8600 km baseline: Demonstrated with the APEX and IRAM 30 m telescopes