Variations in the Fundamental constants in the QSO Host J1148+5251 at z = 6.4 and the BR1202-0725 System at z = 4.7
Lindley Lentati, C. Carilli, P. Alexander, R. Maiolino, R. Wang, P., Cox, D. Downs, R. Neri, R. McMahon, K. M. Menten, D. Riechers, J. Wagg, F., Walter, A. Wolfe

TL;DR
This study uses high-redshift observations of [CII] and CO lines in distant galaxies to constrain potential variations in fundamental constants over cosmic time, finding no significant changes within measurement uncertainties.
Contribution
It introduces a novel approach combining line profile modeling and non-parametric analysis to test for variations in fundamental constants at high redshift.
Findings
No significant variation in the quantity Dz within 99% confidence intervals.
Line profile inconsistencies suggest spatial separation of gas species, affecting measurements.
Constraints on the variation of F=alpha^2/mu over cosmic time.
Abstract
We use sensitive observations of three high redshift sources; [CII] fine structure and CO(2-1) rotational transitions for the z=6.4 Quasar host galaxy (QSO) J1148+5251, and [CII] and CO(5-4) transitions from the QSO BR1202-0725 and its sub-millimeter companion (SMG) galaxy at z=4.7. We use these observations to place constraints on the quantity Dz = z(CO) - z(CII) for each source where z(CO) and z(CII) are the observed redshifts of the CO rotational transition and [CII] fine structure transition respectively, using a combination of approaches; 1) By modelling the emission line profiles using `shapelets' to compare both the emission redshifts and the line profiles themselves, in order to make inferences about the intrinsic velocity differences between the molecular and atomic gas, and 2) By performing a marginalisation over all model parameters in order to calculate a non-parametric…
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