Research output: Contribution to journal › Article › peer-review
Measurement of tensor analyzing power components for the incoherent π 0 -meson photoproduction on a deuteron. / Lukonin, S. E.; Gauzshtein, V. V.; Levchuk, M. I. et al.
In: Nuclear Physics A, Vol. 986, 01.06.2019, p. 75-85.Research output: Contribution to journal › Article › peer-review
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TY - JOUR
T1 - Measurement of tensor analyzing power components for the incoherent π 0 -meson photoproduction on a deuteron
AU - Lukonin, S. E.
AU - Gauzshtein, V. V.
AU - Levchuk, M. I.
AU - Loginov, A. Yu
AU - Nikolenko, D. M.
AU - Rachek, I. A.
AU - Sadykov, R. Sh
AU - Shestakov, Yu V.
AU - Toporkov, D. K.
AU - Zevakov, S. A.
N1 - Publisher Copyright: © 2019
PY - 2019/6/1
Y1 - 2019/6/1
N2 - The paper presents the results of measurement of three tensor analyzing power components for the incoherent π 0 -meson photoproduction on a deuteron in the photon energy range of 250 – 500 MeV, the proton energy range of 15 – 200 MeV, and the neutron energy range of 15 – 150 MeV. The incoherent π 0 -meson electroproduction on a deuteron was used as a source of quasireal photons for the incoherent π 0 -meson photoproduction. The experiment was performed using an internal tensor-polarized gas deuterium target of the VEPP-3 electron storage ring by the proton-neutron coincidence method. The results of measurement of the tensor analyzing power components are compared with the results of statistical modeling performed in the framework of a theoretical model.
AB - The paper presents the results of measurement of three tensor analyzing power components for the incoherent π 0 -meson photoproduction on a deuteron in the photon energy range of 250 – 500 MeV, the proton energy range of 15 – 200 MeV, and the neutron energy range of 15 – 150 MeV. The incoherent π 0 -meson electroproduction on a deuteron was used as a source of quasireal photons for the incoherent π 0 -meson photoproduction. The experiment was performed using an internal tensor-polarized gas deuterium target of the VEPP-3 electron storage ring by the proton-neutron coincidence method. The results of measurement of the tensor analyzing power components are compared with the results of statistical modeling performed in the framework of a theoretical model.
KW - Incoherent pion photoproduction
KW - Nucleon
KW - Photon
KW - Tensor analyzing power
KW - Tensor-polarized deuteron
KW - FINAL-STATE INTERACTION
KW - PI(0)
KW - SEPARABLE REPRESENTATION
KW - SINGLE
KW - COHERENT
KW - MODEL
KW - PION-PHOTOPRODUCTION
UR - http://www.scopus.com/inward/record.url?scp=85063723006&partnerID=8YFLogxK
U2 - 10.1016/j.nuclphysa.2019.03.003
DO - 10.1016/j.nuclphysa.2019.03.003
M3 - Article
AN - SCOPUS:85063723006
VL - 986
SP - 75
EP - 85
JO - Nuclear Physics A
JF - Nuclear Physics A
SN - 0375-9474
ER -
ID: 19357418