English

Asymmetry in $\vec{n} + p -> d + \gamma$

Nuclear Theory 2011-07-19 v2

Abstract

Heavy-baryon chiral perturbation theory (HBChPT) is applied to the asymmetry AγA_\gamma in n+pd+γ\vec{n} + p \to d + \gamma at threshold, which arises due to the weak parity non-conserving interactions. Instead of appealing to Siegert's theorem, transition operators up to next-to-leading chiral order are derived and the corresponding amplitudes are evaluated with the Argonne v18v_{18} wavefunctions. In addition to the impulse contribution, both parity-conserving and parity-non-conserving two-body one-pion-exchange diagrams appear up to this order. Our prediction for the asymmetry is Aγ=0.10\hpiNNA_\gamma = - 0.10 \hpiNN, which is close to the Siegert's theorem based result, Aγ0.11\hpiNNA_\gamma \simeq -0.11 \hpiNN. This illustrates that HBChPT is effective in the parity-non-conserving physics.

Keywords

Cite

@article{arxiv.nucl-th/0101043,
  title  = {Asymmetry in $\vec{n} + p -> d + \gamma$},
  author = {Chang Ho Hyun and Tae-Sun Park and Dong-Pil Min},
  journal= {arXiv preprint arXiv:nucl-th/0101043},
  year   = {2011}
}

Comments

Discussions are extensively refined. To appear in Phys. Lett. B

R2 v1 2026-07-22T18:24:43.860Z