Pion and kaon color transparency data reveal reaction-dependent deuteron normalization and distinct in-medium formation scales, with pions matching quantum diffusion and kaons favoring geometric expansion.
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UNVERDICTED 2representative citing papers
Kaon color transparency in A(e,e'K+) shows steeper Q² dependence than pions and is better described by the naive parton model than the quantum diffusion model when initial-state shadowing is included in the Glauber framework.
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Deuteron normalization and channel-dependent formation dynamics in pion and kaon color transparency
Pion and kaon color transparency data reveal reaction-dependent deuteron normalization and distinct in-medium formation scales, with pions matching quantum diffusion and kaons favoring geometric expansion.
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Naive parton picture for kaon color transparency in $A(e,e'K^+)$
Kaon color transparency in A(e,e'K+) shows steeper Q² dependence than pions and is better described by the naive parton model than the quantum diffusion model when initial-state shadowing is included in the Glauber framework.