High-precision $\alpha_s$ measurements from LHC to FCC-ee
David d'Enterria, Peter Z. Skands (eds.), S. Alekhin, A. Banfi, S., Bethke, J. Bl\"umlein, K.G. Chetyrkin, D. d'Enterria, G. Dissertori, X., Garcia i Tormo, A. H. Hoang, M. Klasen, T. Klijnsma, S. Kluth, J.-L. Kneur,, B.A. Kniehl, D. W. Kolodrubetz, J. K\"uhn, P. Mackenzie

TL;DR
This paper reviews recent advancements and future prospects in high-precision measurements of the strong coupling constant $oldsymbol{ extalpha_s}$ from various methods at LHC and FCC-ee, aiming to significantly reduce uncertainties.
Contribution
It provides a comprehensive overview of current $ extalpha_s$ determination methods, their uncertainties, and the potential improvements with future collider data, especially at FCC-ee.
Findings
Current $ extalpha_s$ uncertainty is about 1%.
FCC-ee could reduce $ extalpha_s$ uncertainty by a factor of ten.
High-luminosity FCC-ee data will enable unprecedented precision in $ extalpha_s$ measurements.
Abstract
This document provides a writeup of all contributions to the workshop on "High precision measurements of : From LHC to FCC-ee" held at CERN, Oct. 12--13, 2015. The workshop explored in depth the latest developments on the determination of the QCD coupling from 15 methods where high precision measurements are (or will be) available. Those include low-energy observables: (i) lattice QCD, (ii) pion decay factor, (iii) quarkonia and (iv) decays, (v) soft parton-to-hadron fragmentation functions, as well as high-energy observables: (vi) global fits of parton distribution functions, (vii) hard parton-to-hadron fragmentation functions, (viii) jets in p DIS and -p photoproduction, (ix) photon structure function in -, (x) event shapes and (xi) jet cross sections in collisions, (xii) W boson and (xiii) Z boson decays, and (xiv)…
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