2009arXiv (Cornell University)Open access

$K_s^0 Hadronization Following DIS at CLAS

K. Hicks, A. V. Daniel

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Abstract

The hadronization of $K^0$ particles was measured in semi-inclusive deep inelastic scattering (SIDIS) kinematics for several nuclear targets using the CLAS detector. Multiplicity ratios and $Δp_T^2$ values were extracted from the data. These results may be compared with similar values for $π^+$ hadronization from CLAS (at the same kinematics) and $K^+$ hadronization from HERMES (at higher energy transfer). The physics goal of these measurements is to understand the space-time evolution as the struck quark becomes a full-blown hadron as it propagates through nuclear matter.

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The hadronization of $K^0$ particles was measured in semi-inclusive deep inelastic scattering (SIDIS) kinematics for several nuclear targets using the CLAS detector. Multiplicity ratios and $Δp_T^2$ values were extracted from the data. These results may be compared with similar values for $π^+$ hadronization from CLAS (at the same kinematics) and $K^+$ hadronization from HERMES (at higher energy transfer). The physics goal of these measurements is to understand the space-time evolution as the struck quark becomes a full-blown hadron as it propagates through nuclear matter.

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Available abstract

The hadronization of $K^0$ particles was measured in semi-inclusive deep inelastic scattering (SIDIS) kinematics for several nuclear targets using the CLAS detector. Multiplicity ratios and $Δp_T^2$ values were extracted from the data. These results may be compared with similar values for $π^+$ hadronization from CLAS (at the same kinematics) and $K^+$ hadronization from HERMES (at higher energy transfer). The physics goal of these measurements is to understand the space-time evolution as the struck quark becomes a full-blown hadron as it propagates through nuclear matter.

Key concepts: Hadronization, Physics, Nuclear physics, Hadron, Particle physics, Multiplicity (mathematics), Deep inelastic scattering, Kinematics

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