HI intensity mapping with MeerKAT: Calibration pipeline for multi-dish autocorrelation observations
Jingying Wang, Mario G. Santos, Philip Bull, Keith Grainge, Steven, Cunnington, Jose Fonseca, Melis O. Irfan, Yichao Li, Alkistis Pourtsidou,, Paula S. Soares, Marta Spinelli, Gianni Bernardi, Brandon Engelbrecht

TL;DR
This paper demonstrates a calibration pipeline for MeerKAT autocorrelation data, enabling effective 21cm intensity mapping and opening new avenues for cosmological studies with dish arrays.
Contribution
It introduces a novel calibration pipeline for dual-polarisation autocorrelation data from MeerKAT, facilitating 21cm intensity mapping with dish arrays.
Findings
Successful calibration of MeerKAT autocorrelation data
Reconstructed HI maps agree with external surveys
Thermal noise close to theoretical limits
Abstract
While most purpose-built 21cm intensity mapping experiments are close-packed interferometer arrays, general-purpose dish arrays should also be capable of measuring the cosmological 21cm signal. This can be achieved most efficiently if the array is used as a collection of scanning autocorrelation dishes rather than as an interferometer. As a first step towards demonstrating the feasibility of this observing strategy, we show that we are able to successfully calibrate dual-polarisation autocorrelation data from 64 MeerKAT dishes in the L-band (856-1712 MHz, 4096 channels), with 10.5 hours of data retained from six nights of observing. We describe our calibration pipeline, which is based on multi-level RFI flagging, periodic noise diode injection to stabilise gain drifts and an absolute calibration based on a multi-component sky model. We show that it is sufficiently accurate to recover…
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