College of William and Mary, Williamsburg, Virginia 23187, USA.
Phys Rev Lett. 2012 Apr 6;108(14):142001. doi: 10.1103/PhysRevLett.108.142001.
We report on the first measurement of the F(2) structure function of the neutron from the semi-inclusive scattering of electrons from deuterium, with low-momentum protons detected in the backward hemisphere. Restricting the momentum of the spectator protons to ≲100 MeV/c and their angles to ≳100° relative to the momentum transfer allows an interpretation of the process in terms of scattering from nearly on-shell neutrons. The F(2)(n) data collected cover the nucleon-resonance and deep-inelastic regions over a wide range of Bjorken x for 0.65<Q(2)<4.52 GeV(2), with uncertainties from nuclear corrections estimated to be less than a few percent. These measurements provide the first determination of the neutron to proton structure function ratio F(2)(n)/F(2)(p) at 0.2≲x≲0.8 with little uncertainty due to nuclear effects.
我们报告了第一个关于从氘的电子半单举散射中测量中子的 F(2)结构函数的结果,其中在后半球探测到低动量质子。限制背散射质子的动量≲100 MeV/c 且它们的角度相对于动量转移≳100°,这允许根据近乎在壳中子散射来解释该过程。在 0.65<Q(2)<4.52 GeV(2)范围内,我们收集了跨越核共振和深非弹性区域的 F(2)(n)数据,其 Bjorken x 范围很广,核修正的不确定性估计小于百分之几。这些测量结果首次在 0.2≲x≲0.8 范围内确定了中子对质子结构函数比 F(2)(n)/F(2)(p),由于核效应的不确定性很小。