Due to the lack of free neutron targets, studies of the structure of the neutron are typically made by scattering electrons from either ²H or ³He targets. In order to extract useful neutron information from a ³He target, one must understand how the neutron in a ³He system differs from a free neutron by taking into account nuclear effects such as final state interactions and meson exchange currents. The target single spin asymmetry A⁰ʸ is an ideal probe of such effects, as any deviation from zero indicates effects beyond plane wave impulse approximation. New measurements of the target single spin asymmetry A⁰ʸ at Q² of 0.46 and 0.96 GeV/c² were made at Jefferson Lab using the quasi-elastic ³He↑(e,e\u27n) reaction. Our measured asymmetry decr...
We report the first measurement of the target-normal single-spin asymmetry in deep-inelastic scatter...
We report the first measurement of target single spin asymmetries in the semi-inclusive [superscript...
Jefferson Lab (JLab) 12 GeV energy upgrade provides a golden opportunity to perform precision studie...
© 2019 The Authors Due to the lack of free neutron targets, studies of the structure of the neutron ...
A measurement of the inclusive target single-spin asymmetry, A[subscript y] ³He, has been performed ...
We report the first measurement of the target single-spin asymmetry, A[subscript y], in quasielastic...
In the last decade, a distinct difference was found between the neutron electric form factors extrac...
We report the first measurement of the target-normal single-spin asymmetry in deep-inelastic scatter...
The 3He nucleus has become extremely important in the investigation of the neutron’s spin structure....
We report the first measurement of the target single-spin asymmetry, Ay, in quasielastic scattering ...
We have measured the spin-dependent transverse asymmetry, A_T', in quasi-elastic inclusive electron ...
We report a measurement of the asymmetry in spin-dependent quasielastic scattering of longitudinally...
A first measurement of the inclusive target single-spin asymmetry, Any , has been performed in dee...
We propose to carry out precision measurements of Single target Spin Asymmetries (SSA) from semi-inc...
We report the first measurement of the target single-spin asymmetry, Ay, in quasielastic scattering ...
We report the first measurement of the target-normal single-spin asymmetry in deep-inelastic scatter...
We report the first measurement of target single spin asymmetries in the semi-inclusive [superscript...
Jefferson Lab (JLab) 12 GeV energy upgrade provides a golden opportunity to perform precision studie...
© 2019 The Authors Due to the lack of free neutron targets, studies of the structure of the neutron ...
A measurement of the inclusive target single-spin asymmetry, A[subscript y] ³He, has been performed ...
We report the first measurement of the target single-spin asymmetry, A[subscript y], in quasielastic...
In the last decade, a distinct difference was found between the neutron electric form factors extrac...
We report the first measurement of the target-normal single-spin asymmetry in deep-inelastic scatter...
The 3He nucleus has become extremely important in the investigation of the neutron’s spin structure....
We report the first measurement of the target single-spin asymmetry, Ay, in quasielastic scattering ...
We have measured the spin-dependent transverse asymmetry, A_T', in quasi-elastic inclusive electron ...
We report a measurement of the asymmetry in spin-dependent quasielastic scattering of longitudinally...
A first measurement of the inclusive target single-spin asymmetry, Any , has been performed in dee...
We propose to carry out precision measurements of Single target Spin Asymmetries (SSA) from semi-inc...
We report the first measurement of the target single-spin asymmetry, Ay, in quasielastic scattering ...
We report the first measurement of the target-normal single-spin asymmetry in deep-inelastic scatter...
We report the first measurement of target single spin asymmetries in the semi-inclusive [superscript...
Jefferson Lab (JLab) 12 GeV energy upgrade provides a golden opportunity to perform precision studie...