Search for the Epoch of Reionisation with HERA: Upper Limits on the Closure Phase Delay Power Spectrum
arXiv:2302.07969 · doi:10.1093/mnras/stad371
Abstract
Radio interferometers aiming to measure the power spectrum of the redshifted 21 cm line during the Epoch of Reionisation (EoR) need to achieve an unprecedented dynamic range to separate the weak signal from overwhelming foreground emissions. Calibration inaccuracies can compromise the sensitivity of these measurements to the effect that a detection of the EoR is precluded. An alternative to standard analysis techniques makes use of the closure phase, which allows one to bypass antenna-based direction-independent calibration. Similarly to standard approaches, we use a delay spectrum technique to search for the EoR signal. Using 94 nights of data observed with Phase I of the Hydrogen Epoch of Reionization Array (HERA), we place approximate constraints on the 21 cm power spectrum at . We find at 95% confidence that the 21 cm EoR brightness temperature is (372) "pseudo" mK at 1.14 "pseudo" Mpc, where the "pseudo" emphasises that these limits are to be interpreted as approximations to the actual distance scales and brightness temperatures. Using a fiducial EoR model, we demonstrate the feasibility of detecting the EoR with the full array. Compared to standard methods, the closure phase processing is relatively simple, thereby providing an important independent check on results derived using visibility intensities, or related.
16 pages, 14 figures, accepted for publication by MNRAS
References in corpus (24)
- The NumPy array: a structure for efficient numerical computation
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- GaLactic and Extragalactic All-sky Murchison Widefield Array (GLEAM) survey I: A low-frequency extragalactic catalogue
- Improved upper limits on the 21-cm signal power spectrum of neutral hydrogen at from LOFAR
- The Epoch of Reionization Window: I. Mathematical Formalism
- Deep multi-redshift limits on Epoch of Reionisation 21cm Power Spectra from Four Seasons of Murchison Widefield Array Observations
- First Results from HERA Phase I: Upper Limits on the Epoch of Reionization 21 cm Power Spectrum
- First Season MWA EoR Power Spectrum Results at Redshift 7
- HERA Phase I Limits on the Cosmic 21-cm Signal: Constraints on Astrophysics and Cosmology During the Epoch of Reionization
- Improving the Epoch of Reionization Power Spectrum Results from Murchison Widefield Array Season 1 Observations
- First Season MWA Phase II EoR Power Spectrum Results at Redshift 7
- Mitigating Internal Instrument Coupling II: A Method Demonstration with the Hydrogen Epoch of Reionization Array
- Mitigating Internal Instrument Coupling for 21 cm Cosmology I: Temporal and Spectral Modeling in Simulations
- The challenges of low-frequency radio polarimetry: lessons from the Murchison Widefield Array
- Modelling of the Spectral Energy Distribution of Fornax A: Leptonic and Hadronic Production of High Energy Emission from the Radio Lobes
- Patterns of primary beam non-redundancy in close-packed 21 cm array observations
- Closure Traces: Novel Calibration-Insensitive Quantities for Radio Astronomy
- Validation of the HERA Phase I Epoch of Reionization 21 cm Power Spectrum Software Pipeline
- Detection of Cosmic Structures using the Bispectrum Phase. II. First Results from Application to Cosmic Reionization Using the Hydrogen Epoch of Reionization Array
- Methods of Error Estimation for Delay Power Spectra in Cosmology
- Invariants in Co-polar Interferometry: an Abelian Gauge Theory
- Invariants in Polarimetric Interferometry: a non-Abelian Gauge Theory
- Detection of Cosmic Structures using the Bispectrum Phase. I. Mathematical Foundations
- Automated Detection of Antenna Malfunctions in Large-N Interferometers: A Case Study with the Hydrogen Epoch of Reionization Array