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Two-Body T-Matrices Without Angular-Momentum Decomposition: Energy and Momentum Dependences

机译:没有角动量分解的两体T矩阵:能量和动量依赖性

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摘要

The two-body T-matrix is calculated directly as function of two vector momenta for different Malfliet--Tjon-type potentials. At a few hundred MeV projectile energy the total amplitude is quite a smooth function showing only a strong peak in forward direction. In contrast, the corresponding partial-wave contributions, whose number increases with increasing energy, become more and more oscillatory with increasing energy. The angular and momentum dependence of the full amplitude is studied and displayed on as well as off the energy shell as function of positive and negative energies. The behaviour of the T-matrix in the vicinity of bound-state poles and resonance poles in the second energy sheet is studied. It is found that the angular dependence of T exhibits very characteristic properties in the vicinity of those poles, which are given by the Legendre function corresponding to the quantum number either of the bound state or the resonance (or virtual) state. This behaviour is illustrated along numerical examples.
机译:对于不同的Malfliet-Tjon型势,两体T矩阵直接作为两个矢量矩的函数进行计算。在几百个MeV弹丸能量下,总振幅是一个相当平滑的函数,仅在向前方向显示一个强峰值。相反,随着能量的增加而增加的相应的分波贡献随着能量的增加而变得越来越振荡。研究和显示了整个振幅对角和动量的依赖关系,以及在能量壳上和能量壳外显示正负能量的函数。研究了第二能量片中T-矩阵在束缚态极点和共振极附近的行为。发现T的角度依赖性在那些极点附近表现出非常特征的性质,这由对应于束缚态或共振(或虚拟)态的量子数的勒让德函数给出。通过数字示例说明了此行为。

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