作者
K Wijesooriya, A Afanasev, M Amarian, K Aniol, S Becher, K Benslama, L Bimbot, P Bosted, EJ Brash, J Calarco, Z Chai, CC Chang, T Chang, JP Chen, S Choi, E Chudakov, S Churchwell, D Crovelli, S Dieterich, S Dumalski, D Dutta, M Epstein, Kevin Fissum, B Fox, S Frullani, H Gao, J Gao, F Garibaldi, O Gayou, R Gilman, A Glamazdin, C Glashausser, J Gomez, V Gorbenko, O Hansen, RJ Holt, J Hovdebo, GM Huber, CW De Jager, X Jiang, C Jones, MK Jones, J Kelly, E Kinney, E Kooijman, G Kumbartzki, M Kuss, J LeRose, M Liang, R Lindgren, N Liyanage, S Malov, DJ Margaziotis, P Markowitz, K McCormick, D Meekins, Z-E Meziani, R Michaels, J Mitchell, L Morand, CF Perdrisat, R Pomatsalyuk, V Punjabi, RD Ransome, R Roche, M Rvachev, A Saha, A Sarty, EC Schulte, D Simon, S Strauch, R Suleiman, L Todor, PE Ulmer, GM Urciuoli, B Wojtsekhowski, F Xiong, W Xu
发表日期
2002/9/26
期刊
Physical Review C
卷号
66
期号
3
页码范围
034614
出版商
American Physical Society
简介
We present measurements of the recoil proton polarization for the 1 H (γ→, p→) π 0 reaction for θ c. m. π= 60–135 and for photon energies up to 4.1 GeV. These are the first data in this reaction for polarization transfer with circularly polarized photons. Various theoretical models are compared with the results. No evidence for hadron helicity conservation is observed. Models that employ factorization are not favored. It appears from the strong angular dependence of the induced polarization at photon energies of 2.5 and 3.1 GeV that a relatively high spin resonance or background amplitude might exist in this energy region.
引用总数
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