Analysis of Overlapping Resonances with Unitary Breit–Wigner and K-Matrix Approaches

V. Henner, T. Belozerova
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Abstract

We compare two methods for obtaining the parameters of overlapping resonances. The convenience of the Breit–Wigner (BW) approach is based on the fact that it operates with the masses and widths of the states. For several resonances with the same quantum numbers, a sum of BW functions violates the unitarity of the S-matrix. However, unitarity can be maintained by introducing interference phases to a BW implementation of scattering matrix formalism. A background can be added to the BW amplitudes in the standard way by using background phases. The K-matrix method is often used to analyze data related to several resonances with the same quantum numbers. It guarantees the unitarity of the S-matrix, but its parameters can be considered as resonance masses and widths only for well-spaced states. It also does not allow the separation of the resonant and background contributions in scattering amplitudes, which is critically important for determining parameters of wide resonances. To demonstrate the features of these methods, we consider several examples using simulated data.
用统一Breit-Wigner和k -矩阵方法分析重叠共振
我们比较了两种获取重叠共振参数的方法。Breit-Wigner (BW)方法的便利性是基于这样一个事实,即它适用于状态的质量和宽度。对于具有相同量子数的多个共振,BW函数的和违反了s矩阵的一致性。然而,通过在散射矩阵形式的BW实现中引入干涉相位,可以保持一致性。背景可以通过使用背景相位以标准方式添加到BW振幅中。k矩阵法通常用于分析具有相同量子数的多个共振相关的数据。它保证了s矩阵的统一性,但其参数只能考虑为均匀间隔状态的共振质量和共振宽度。它也不允许分离散射振幅中的共振和背景贡献,这对于确定宽共振的参数至关重要。为了演示这些方法的特点,我们考虑了几个使用模拟数据的例子。
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