Studies on the polarization transfer coefficients Cx and Cz in the gamma p -> K+ Lambda(1520,3/2-) reaction process

Abstract

We investigate the polarization transfer coefficients C(x,z) for the gamma p -> K+ Lambda(1520,3/2-) reaction process, in which the photon is polarized circularly and the Lambda(1520,3/2-) along the x- or z-axis. To this end, we employ the effective Lagrangian method at tree level and the gauge-invariant form factor scheme. In addition to the Born terms, (s,u,tK,tK*)-channels and contact term, we include the nucleon resonance D13(2080) in the s-channel. We compute the C(x,z) as functions of thetaK as well as Ecm. It turns out that the K*-exchange and D13 contributions are negligible within available experimental and theoretical inputs for them. In contrast, we observe that the contact and K-exchange contributions play dominant roles for determining the C(x,z). Especially, the K-exchange enhances the transverse polarization transfer Cx considerably.

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