Jermann N, Krusche B, Metag V, Afzal F, Badea M, Beck R, Bielefeldt P, Bieling J, Biroth M, Blanke E, Borisov N, Bornstein M, Brinkmann K-T, Ciupka S, Crede V, Dolzhikov A, Drexler P, Dutz H, Elsner D, Fedorov A, Frommberger F, Gardner S, Ghosal D, Goertz S, Gorodnov I, Grüner M, Hammann C, Hartmann J, Hillert W, Hoffmeister P, Honisch C, Jude T C, Kalischewski F, Ketzer B, Klassen P, Klein F, Klempt E, Knaust J, Kolanus N, Kreit J, Krönert P, Lang M, Lazarev A B, Livingston K, Lutterer S, Mahlberg P, Meier C, Meyer W, Mitlasoczki B, Müllers J, Nanova M, Neganov A, Nikonov K, Noël J F, Ostrick M, Ottnad J, Otto B, Penman G, Poller T, Proft D, Reicherz G, Reinartz N, Richter L, Runkel S, Salisbury B, Sarantsev A V, Schaab D, Schmidt C, Schmieden H, Schultes J, Seifen T, Spieker K, Stausberg N, Steinacher M, Taubert F, Thiel A, Thoma U, Thomas A, Urban M, Urff G, Usov Y, van Pee H, Wang Y C, Wendel C, Wiedner U, Wunderlich Y
Department of Physics, University of Basel, Basel, Switzerland.
Helmholtz-Institut für Strahlen-und Kernphysik, University of Bonn, Bonn, Germany.
Eur Phys J A Hadron Nucl. 2023;59(10):232. doi: 10.1140/epja/s10050-023-01134-0. Epub 2023 Oct 17.
The target asymmetry , recoil asymmetry , and beam-target double polarization observable were determined in exclusive and photoproduction off quasi-free protons and, for the first time, off quasi-free neutrons. The experiment was performed at the electron stretcher accelerator ELSA in Bonn, Germany, with the Crystal Barrel/TAPS detector setup, using a linearly polarized photon beam and a transversely polarized deuterated butanol target. Effects from the Fermi motion of the nucleons within deuterium were removed by a full kinematic reconstruction of the final state invariant mass. A comparison of the data obtained on the proton and on the neutron provides new insight into the isospin structure of the electromagnetic excitation of the nucleon. Earlier measurements of polarization observables in the and reactions are confirmed. The data obtained on the neutron are of particular relevance for clarifying the origin of the narrow structure in the system at . A comparison with recent partial wave analyses favors the interpretation of this structure as arising from interference of the and resonances within the -partial wave.
在准自由质子以及首次在准自由中子的专属和光生过程中,确定了靶不对称性、反冲不对称性和束流 - 靶双极化可观测量。该实验在德国波恩的电子拉伸加速器ELSA上进行,使用晶体桶/ TAPS探测器装置,采用线偏振光子束和横向偏振的氘代丁醇靶。通过对末态不变质量进行全运动学重建,消除了氘核内核子费米运动的影响。对质子和中子上获得的数据进行比较,为核子电磁激发的同位旋结构提供了新的见解。早期在γp和γn反应中对极化可观测量的测量得到了证实。在中子上获得的数据对于阐明在特定能量下γn系统中窄结构的起源特别重要。与最近的分波分析进行比较,有利于将该结构解释为由特定分波内的特定共振和另一种共振的干涉引起。