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Chiral Lagrangian Approach to Exchange Vector Currents in Nuclei

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arxiv nucl-th/9505017 v1 pith:KYEXFXRZ submitted 1995-05-12 nucl-th hep-ph

Chiral Lagrangian Approach to Exchange Vector Currents in Nuclei

classification nucl-th hep-ph
keywords chiralapproachexchangenuclearcurrentsgivinglagrangianmbox
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Exchange vector currents are calculated up to one-loop order (corresponding to next-to-next-to-leading order) in chiral perturbation theory. As an illustration of the power of the approach, we apply the formalism to the classic nuclear process $n+p\rightarrow d +\gamma$ at thermal energy. The exchange current correction comes out to be $(4.5 \pm 0.3)$ \% in amplitude giving a predicted cross section $\sigma= (334\pm 3)\ {\mbox mb}$ in excellent agreement with the experimental value $(334.2\pm 0.5)\ {\mbox mb}$. Together with the axial charge transitions computed previously, this result provides a strong support for the power of chiral Lagrangians in nuclear physics. As a by-product of our results, we suggest an open problem in the application of chiral Lagrangian approach to nuclear processes that has to do with giving a physical meaning to the short-range correlations that play an important role in nuclei.

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Cited by 2 Pith papers

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  2. Analytic decomposition of two-body electroweak processes with left-hand cuts

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    An on-shell decomposition of 2+J o2 electroweak amplitudes isolates OPE poles, logs, and triangle singularities, leaving only smooth short-distance functions.