Measurement Of Pretzelosity Asymmetry Of Charged Pion Production In Semi Inclusive Deep Inelastic Scattering On A Polarized Math Mmultiscripts Mi Mathvariant

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Measurement of "pretzelosity" Asymmetry of Charged Pion Production in Semi-inclusive Deep Inelastic Scattering on a Polarized [math][mmultiscripts][mi Mathvariant

An experiment to measure single-spin asymmetries in semi-inclusive production of charged pions in deep-inelastic scattering on a transversely polarized 3He target was performed at Jefferson Lab in the kinematic region of 0.16
Single Spin Asymmetries in Charged Pion Production from Semi-Inclusive Deep Inelastic Scattering on a Transversely Polarized $^3$He Target

We report the first measurement of target single spin asymmetries in the semi-inclusive $^3{He}(e, e'\pi^\pm)X$ reaction on a transversely polarized target. The experiment, conducted at Jefferson Lab using a 5.9 GeV electron beam, covers a range of 0.14 $
Beam-Target Double Spin Asymmetry A[sub]LT[/sub] in Charged Pion Production from Deep Inelastic Scattering on a Transversely Polarized [sup]3[/sup]He Target at 1.4[Q[sup]2[/sup][2.7 GeV[sup]2[/sup].
![Beam-Target Double Spin Asymmetry A[sub]LT[/sub] in Charged Pion Production from Deep Inelastic Scattering on a Transversely Polarized [sup]3[/sup]He Target at 1.4[Q[sup]2[/sup][2.7 GeV[sup]2[/sup].](https://library.ardhindie.com/contents/assets/images/blank.png)
We report the first measurement of the double-spin asymmetry ALT for charged pion electroproduction in semi-inclusive deep inelastic electron scattering on a transversely polarized 3He target. The kinematics focused on the valence quark region, 0.16 x 0.35 with 1.4 Qsup2/sup 2.7 GeVsup2/sup. The corresponding neutron AsubLT/sub asymmetries were extracted from the measured sup3/supHe asymmetries and proton/sup3/supHe cross section ratios using the effective polarization approximation. These new data probe the transverse momentum dependent parton distribution function gsub 1T/subsupq/sup and therefore provide access to quark spin-orbit correlations. Our results indicate a positive azimuthal asymmetry for?sup-