|
1.
|
T. Navasardyan et al.
Show Abstract
A large data set of charged-pion (π±) electroproduction from both hydrogen and deuterium targets has been obtained spanning the low-energy residual-mass region. These data conclusively show the onset of the quark-hadron duality phenomenon, as predicted for high-energy hadron electroproduction. We construct several ratios from these data to exhibit the relation of this phenomenon to the high-energy factorization ansatz of electron-quark scattering and subsequent quark→pion production mechanisms.
Phys. Rev. Lett. 98, 022001 (2007)
Cited 1 times
|
|
2.
|
L. Yuan et al. HNSS Collaboration
Show Abstract
A pioneering experiment in Λ hypernuclear spectroscopy, undertaken at the Thomas Jefferson National Accelerator Facility (JLab), was recently reported. The experiment used the high precision, continuous electron beam at JLab, and a special arrangement of spectrometer magnets to measure the hypernuclear spectrum from C and 7Li targets using the (e,e'K+) reaction. The Λ12B spectrum found in this investigation was previously published, but is reported here in more detail, with improved resolution. In addition, the results of a Λ7He spectrum also obtained in the experiment, are shown. This latter spectrum indicates the need for a more detailed few-body calculation of the hypernucleus and the reaction process. The success of the experiment demonstrates the potential of the (e,e'K+) reaction for high resolution spectroscopy of hypernuclear spectra.
Phys. Rev. C 73, 044607 (2006)
Cited 3 times
|
|
3.
|
T. Miyoshi et al. HNSS Collaboration
Show Abstract
High-energy, cw electron beams at new accelerator facilities allow electromagnetic production and precision study of hypernuclear structure, and we report here on the first experiment demonstrating the potential of the (e,e′K+) reaction for hypernuclear spectroscopy. This experiment is also the first to take advantage of the enhanced virtual photon flux available when electrons are scattered at approximately zero degrees. The observed energy resolution was found to be ≈900 keV for the Λ12B spectrum, and is substantially better than any previous hypernuclear experiment using magnetic spectrometers. The positions of the major excitations are found to be in agreement with a theoretical prediction and with a previous binding energy measurement, but additional structure is also observed in the core excited region, underlining the future promise of this technique.
Phys. Rev. Lett. 90, 232502 (2003)
Cited 6 times
|
|
4.
|
R. M. Mohring et al.
Show Abstract
We report measurements of cross sections for the reaction 1H(e,e′K+)Y, for both the Λ and Σ0 hyperon states, at an invariant mass of W=1.84 GeV and four-momentum transfers 0.5<Q2<2 (GeV/c)2. Data were taken for three values of virtual photon polarization ε, allowing the decomposition of the cross sections into longitudinal and transverse components. The Λ data are a revised analysis of prior work, whereas the Σ0 results have not been previously reported.
Phys. Rev. C 67, 055205 (2003)
Cited 14 times
|
|
5.
|
G. Niculescu et al.
Show Abstract
The 1H(e,e′K+)Λ reaction was studied as a function of the squared four-momentum transfer, Q2, and the virtual photon polarization, ɛ. For each of four Q2 settings, 0.52, 0.75, 1.00, and 2.00 (GeV/c)2, the longitudinal and transverse virtual photon cross sections were extracted in measurements at three virtual photon polarizations. The Q2 dependence of the σL/σT ratio differs significantly from current theoretical predictions. This, combined with the precision of the measurement, implies a need for revision of existing calculations.
Phys. Rev. Lett. 81, 1805 (1998)
Cited 17 times
|