Final COMPASS results on the deuteron spin-dependent structure function $g_1^{\rm d}$ and the Bjorken sum rule
C. Adolph, M. Aghasyan, R. Akhunzyanov, M.G. Alexeev, G.D. Alexeev, A., Amoroso, V. Andrieux, N.V. Anfimov, V. Anosov, K. Augsten, W. Augustyniak, A., Austregesilo, C.D.R. Azevedo, B. Badelek, F. Balestra, M. Ball, J. Barth, R., Beck, Y. Bedfer, J. Bernhard, K. Bicker

TL;DR
This paper presents comprehensive results from the COMPASS experiment on the deuteron spin structure function $g_1^{ m d}$, tests the Bjorken sum rule, and extracts the quark helicity contribution to the nucleon spin with high precision.
Contribution
It provides the final measurements of $g_1^{ m d}$ and $g_1^{ m p}$, evaluates the Bjorken sum rule, and determines the flavor-singlet axial charge $a_0$ with minimal extrapolation uncertainty.
Findings
$g_1^{ m d}$ decreases at low $x$ and approaches zero.
Bjorken sum rule is consistent within uncertainties.
The quark helicity contribution $a_0$ is measured as 0.32 with quantified uncertainties.
Abstract
Final results are presented from the inclusive measurement of deep-inelastic polarised-muon scattering on longitudinally polarised deuterons using a LiD target. The data were taken at beam energy and the results are shown for the kinematic range in photon virtuality, in the Bjorken scaling variable and in the mass of the hadronic final state. The deuteron double-spin asymmetry and the deuteron longitudinal-spin structure function are presented in bins of and . Towards lowest accessible values of , decreases and becomes consistent with zero within uncertainties. The presented final values together with the recently published final values of COMPASS are used to again evaluate the Bjorken sum rule and…
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