Selection rules for the S-Matrix bootstrap

A. Bose, Aninda Sinha, S. Tiwari
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引用次数: 27

Abstract

We examine the space of allowed S-matrices on the Adler zeros' plane using the recently resurrected (numerical) S-matrix bootstrap program for pion scattering. Two physical quantities, an averaged total scattering cross-section, and an averaged entanglement power for the boundary S-matrices, are studied. Emerging linearity in the leading Regge trajectory is correlated with a reduction in both these quantities. We identify two potentially viable regions where the S-matrices give decent agreement with low energy S- and P-wave scattering lengths and have leading Regge trajectory compatible with experiments. The Lovelace-Shapiro model, which was a precursor to modern string theory, is given by a straight line in the Adler zeros' plane and, quite remarkably, we find that this line intersects the space of allowed S-matrices near both these regions.
s矩阵自举的选择规则
我们使用最近复活的(数值)s矩阵自举程序来研究介子散射在Adler零点平面上允许s矩阵的空间。研究了边界s矩阵的平均总散射截面和平均纠缠功率两个物理量。领先的雷格轨迹中出现的线性与这两个量的减少有关。我们确定了两个潜在可行的区域,其中S矩阵与低能S波和p波散射长度具有良好的一致性,并且具有与实验相容的领先Regge轨迹。Lovelace-Shapiro模型是现代弦理论的先驱,它是由阿德勒零平面上的一条直线给出的,非常值得注意的是,我们发现这条线在这两个区域附近与允许的s矩阵空间相交。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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