Difference between revisions of "Measurement of the beam asymmetry Σ for π^0 and η photoproduction on the proton at E sub γ=9 GeV"
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− | | (a) Photon beam intensity versus energy as measured by the pair spectrometer (not corrected for instrumental acceptance). (b) Photon beam polarization as a function of beam energy, as measured by the triplet polarimeter, with data points offset horizontally by ±0.015 GeV for clarity. || <span class="plainlinks">[https://halldweb.jlab.org/DocDB/0031/003102/036/fig0_beam.pdf]</span> | + | | (a) Photon beam intensity versus energy as measured by the pair spectrometer (not corrected for instrumental acceptance). (b) Photon beam polarization as a function of beam energy, as measured by the triplet polarimeter, with data points offset horizontally by ±0.015 GeV for clarity. || <span class="plainlinks">[https://halldweb.jlab.org/DocDB/0031/003102/036/fig0_beam.pdf pdf]</span> |
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Latest revision as of 07:09, 22 March 2019
Publication Information
- H. Al Ghoul et al. [GlueX Collaboration], Phys. Rev. C95, 042201 (2107), DOI:10.1103/PhysRevC.95.042201.
- arXiv:1701.08123 [nucl-ex] (2017).
- HEPData.
Abstract
We report measurements of the photon beam asymmetry Σ for the reactions γ⃗p→π0p and γ⃗p→ηp from the GlueX experiment using a 9 GeV linearly-polarized, tagged photon beam incident on a liquid hydrogen target in Jefferson Lab's Hall D. The asymmetries, measured as a function of the proton momentum transfer, possess greater precision than previous π0 measurements, and are the first η measurements in this energy regime. The results are compared with theoretical predictions based on t-channel, quasi-particle exchange and constrain the axial-vector component of the neutral meson production mechanism in these models.
Caption | Figures |
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(a) Photon beam intensity versus energy as measured by the pair spectrometer (not corrected for instrumental acceptance). (b) Photon beam polarization as a function of beam energy, as measured by the triplet polarimeter, with data points offset horizontally by ±0.015 GeV for clarity. |