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首页> 外文期刊>Journal of Physics, G. Nuclear and Particle Physics: An Institute of Physics Journal >Relativistic two-, three- and four-body wave equations in scalar QFT
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Relativistic two-, three- and four-body wave equations in scalar QFT

机译:标量QFT中的相对论二体,三体和四体波动方程

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We use the variational method within the Hamiltonian formalism of QFT to derive relativistic two-, three- and four-body wave.equations for scalar particles interacting via a massive or massless mediating scalar field (the scalar Yukawa model). The Lagrangian of the theory is reformulated by using Green's functions to express the mediating field in terms of the particle fields. The QFT is then constructed from the resulting reformulated Hamiltonian. Simple Fock-space variational trial states are used to derive relativistic two-, three- and four-body equations. The equations are shown to have the Schrodinger non-relativistic limit, with Coulombic interparticle potentials in the case of a massless mediating field and Yukawa interparticle potentials in the case of a massive mediating field. Ground-state solutions of the relativistic equations are obtained approximately for various strengths of coupling, for both massive and massless mediating fields, and a comparison of the two-, three- and four-particle binding energies is presented.
机译:我们使用QFT的哈密顿形式主义中的变分方法来推导相对论的二体,三体和四体波方程,这些标量粒子通过大量或无质量的介量标量场(标量Yukawa模型)相互作用。该理论的拉格朗日法是通过使用格林函数用粒子场来表示中介场来重新构造的。然后根据所得的重新形成的哈密顿量构造QFT。简单的Fock空间变分试验状态用于导出相对论的二体,三体和四体方程。方程显示为具有Schrodinger非相对论极限,在无质量的介电场中具有库仑粒子间势,在大质量的介电场中具有Yukawa粒子间势。分别针对大量和无质量的中介场,针对各种耦合强度,获得了相对论方程的基态解,并给出了两个,三个和四个粒子结合能的比较。

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