Correcting for the effects of the point spread function in intra-halo light measurements and application to deep Hyper Suprime-Cam data
L. P. Garate-Nu\~nez, A. S. G. Robotham, S. Bellstedt, L. J. M. Davies

TL;DR
This paper develops and applies two methods to accurately measure the diffuse intra-halo light in galaxy groups and clusters, correcting for telescope PSF effects, and demonstrates their effectiveness on simulated and real Hyper Suprime-Cam data.
Contribution
It introduces a combined PSF correction and exponential fitting technique for robust IHL measurement, improving accuracy over previous methods.
Findings
Proper PSF correction reduces IHL flux overestimation by up to 100 times.
Median IHL fractions in a GAMA group are approximately 0.19 in g-band, 0.08 in r-band, and 0.06 in i-band.
Method validated on 5440 mock observations and applied to real data.
Abstract
The intra-halo light (IHL) is the diffuse stellar component that surrounds galaxies, groups, and clusters. Its formation is intimately linked to the hierarchical assembly of the system, making it a key tracer of galaxy evolution. However, the low surface brightness (LSB) of the IHL makes it challenging to detect and also to distinguish from the point spread function (PSF) effect of the telescope. In this paper, we present two independent techniques that, when combined, provide a statistically robust estimation of the IHL component in galaxy groups and clusters. The first technique corrects for the PSF-scattering effect to obtain unbiased LSB measurements, while the second fits an exponential model to the IHL component using a Markov Chain Monte Carlo (MCMC) optimiser algorithm. To test our methodology, we build a set of 5440 Hyper Suprime-Cam Subaru Strategic Program Public Data Release…
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Taxonomy
TopicsCalibration and Measurement Techniques · Infrared Target Detection Methodologies · Remote Sensing in Agriculture
