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Remark on Charm Quark Fragmentation to DD^{**} Mesons

Abstract

The observed DD^{**} mesons have cqˉc\bar q flavor quantum numbers and spin-parity of the light degrees of freedom sπ=3/2+s_\ell^{\pi_{\ell}} = 3/2^+. In the mcm_c \rightarrow \infty limit the spin of the charm quark is conserved and the cDc \rightarrow D^{**} fragmentation process is characterized by the probability for the charm quark to fragment to a DD^{**} meson with a given helicity for the light degrees of freedom. We consider the calculated bBcb \rightarrow B_c^{**} fragmentation functions in the limit mc/mb0m_c/m_b \rightarrow 0 as a qualitative model for the cDc \rightarrow D^{**} fragmentation functions. We find that in this model charm quark fragmentation to sπ=3/2+s_\ell^{\pi_{\ell}} = 3/2^+ light degrees of freedom with helicities ±1/2\pm 1/2 is favored over fragmentation to sπ=3/2+s_\ell^{\pi_{\ell}} = 3/2^+ light degrees of freedom with helicities ±3/2\pm 3/2.Comment: 6 pages, CALT-68-192

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