First Monte Carlo Global Analysis of Nucleon Transversity with Lattice QCD Constraints

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Abstract

We report on the first global QCD analysis of the quark transversity distributions in the nucleon from semi-inclusive deep-inelastic scattering (SIDIS), using a new Monte Carlo method based on nested sampling and constraints on the isovector tensor charge gT from lattice QCD. A simultaneous fit to the available SIDIS Collins asymmetry data is compatible with gT values extracted from a comprehensive reanalysis of existing lattice simulations, in contrast to previous analyses, which found significantly smaller gT values. The contributions to the nucleon tensor charge from u and d quarks are found to be δu=0.3(2) and δd=-0.7(2) at a scale Q2=2 GeV2.

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Lin, H. W., Melnitchouk, W., Prokudin, A., Sato, N., & Shows, H. (2018). First Monte Carlo Global Analysis of Nucleon Transversity with Lattice QCD Constraints. Physical Review Letters, 120(15). https://doi.org/10.1103/PhysRevLett.120.152502

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