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Multi-reaction-channel fitting calculations in a coupled-channel model: Photoinduced strangeness production

机译:耦合通道模型中的多反应通道拟合计算:光致奇异产生

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To describe photo- and meson-induced reactions on the nucleon, one is faced with a rather extensive coupled-channel problem. Ignoring the effects of channel coupling, as one would do in describing a certain reaction at the tree level, invariably creates a large inconsistency between the different reactions that are described. In addition, the imaginary parts of the amplitude, which are related through the optical theorem, to total cross-sections, are directly reflected in certain polarization observables. Performing a full coupled-channel calculation thus offers the possibility to implement the maximum number of constraints. The drawback one is faced with is to arrive at a simultaneous fit of a large number of reaction channels. While some of the parameters are common to many reactions, one is still faced with the challenge to optimize a large number of parameters in a highly non-linear calculation. Here we show that such an approach is possible and present some results for photoinduced strangeness production.
机译:为了描述光子和介子在核子上引起的反应,人们面临着相当广泛的耦合通道问题。就像在树级别描述某种反应那样,忽略通道耦合的影响,总是会在所描述的不同反应之间造成很大的不一致。此外,通过光学定理与总横截面相关的振幅的虚部直接反映在某些偏振可观察物中。因此,执行完整的耦合通道计算可以实现最大数量的约束。面临的缺点是要同时装配大量的反应通道。尽管某些参数对于许多反应是共有的,但仍然面临着在高度非线性计算中优化大量参数的挑战。在这里,我们证明了这种方法是可行的,并为光致奇异产生提供了一些结果。

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