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Worldline variational approximation: A new approach to the relativistic binding problem

机译:世界线变分逼近:相对论绑定问题的新方法

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We determine the lowest bound-state pole of the density-density correlator in the scalar Wick-Cutkosky model where two equal-mass constituents interact via the exchange of mesons. This is done by employing the worldline representation of field theory together with a variational approximation as in Feynman's treatment of the polaron. Unlike traditional methods based on the Bethe-Salpeter equation, self-energy and vertex corrections are (approximately) included as are crossed diagrams. Only vacuum-polarization effects of the heavy particles axe neglected. The well-known instability of the model due to self-energy effects leads to large qualitative and quantitative changes compared to traditional approaches which neglect them. We determine numerically the critical coupling constant above which no real solutions of the variational equations exist anymore and show that it is smaller than in the one-body case due to an induced instability. The width of the bound state above the critical coupling is estimated analytically.
机译:我们确定了标量Wick-Cutkosky模型中密度-密度相关器的最低束缚态极点,其中两个等质量的组分通过介子交换相互作用。这是通过采用场论的世界线表示以及费恩曼对极化子的处理中的变分近似来完成的。与基于Bethe-Salpeter方程的传统方法不同,自能量和顶点校正(如交叉图所示)被包括在内。仅忽略了重粒子的真空极化作用。与传统方法忽略不计的自能量效应相比,该模型众所周知的不稳定性导致大量的定性和定量变化。我们从数值上确定了临界耦合常数,高于该临界耦合常数,则不再存在任何变分方程的实际解,并表明由于诱发的不稳定性,该常数小于单体情况。临界耦合以上的束缚态宽度是通过分析估算的。

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