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  1. Bharaj, P; Asempapa, R (Ed.)
    Free, publicly-accessible full text available March 5, 2027
  2. Bharaj, P; Asempapa, R (Ed.)
    Free, publicly-accessible full text available March 5, 2027
  3. Pion photoproduction in the γpπ0p reaction has been measured in the FROzen Spin Target (FROST) experiment at the Thomas Jefferson National Accelerator Facility. In this experiment, circularly polarized photons with energies up to 3.082 GeV impinged on a transversely polarized frozen-spin target. Final-state protons were detected in the Continuous Electron Beam Accelerator Facility (CEBAF) Large Acceptance Spectrometer. The polarization observables T and F have been extracted for W from 1445 to 2525 MeV, of which the energy range is much broader, and the precision is better than the existing measurements in higher W ranges. The data generally agree with predictions of present partial-wave analyses but also show marked differences for higher W ranges. By incorporating the present data into the databases, the Scattering Analysis Interactive Data (SAID) fits have been improved with relatively small χ2 and significant changes in the parameters of the Δ(1910)1/2+ and N(2190)7/2 have been found with the JüBo model. 
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    Free, publicly-accessible full text available July 1, 2027
  4. Based on 334pb1 of photoproduction data collected with the GlueX detector at Jefferson Lab, we have measured for the first time the cross section of the exclusive reaction γ+pϕ(1020)π+πp by reconstructing the final state K+Kπ+πp produced with a photon beam of energies between 8.0 and 11.6 GeV. Based on the measured differential cross section, we have performed a search for the strangeoniumlike exotic candidate Y(2175) , recently renamed to ϕ(2170) . This state has been reported by different e+e annihilation experiments and it is addressed here for the first time in a photoproduction experiment. We do not find evidence for this state when using the resonance parameters quoted by the Particle Data Group and provide upper limits on the photoproduction cross section. Instead, we find a structure at a mass of m(ϕπ+π)=2.24GeV/c2 with a statistical significance of about 5σ . The parameters of this structure differ from those quoted by the Particle Data Group for the ϕ(2170) and are consistent with a previous observation in e+e annihilation. In addition, there is evidence for a second structure at 1.82GeV/c2
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    Free, publicly-accessible full text available June 1, 2027
  5. The experiment at Jefferson Lab has observed pp¯ and, for the first time, ΛΛ¯ and pΛ¯ photoproduction from a proton target at photon energies up to 11.6 GeV. The angular distributions are forward peaked for all produced pairs, consistent with Regge-like t -channel exchange. Asymmetric wide-angle antibaryon distributions show the presence of additional processes. In a phenomenological model, we find consistency with a double- t -channel exchange process where antibaryons are created only at the middle vertex. The model matches all observed distributions with a small number of free parameters. In the hyperon channels, we observe a clear distinction between photoproduction of the ΛΛ¯ and pΛ¯ systems but general similarity to the pp¯ system. We report both total cross sections and cross sections differential with respect to momentum transfer and the invariant masses of the created particle pairs. No narrow resonant structures were found in these reaction channels. The suppression of ss¯ quark pairs relative to dd¯ quark pairs is similar to what has been seen in other reactions. 
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    Free, publicly-accessible full text available April 1, 2027
  6. Free, publicly-accessible full text available December 1, 2026