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Interpolating quantum electrodynamics between instant and front forms

机译:插值速度与前置形式之间的量子电动动力学

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The instant form and the front form of relativistic dynamics proposed by Dirac in 1949 can be linked by an interpolation angle parameter δ spanning between the instant form dynamics (IFD) at δ = 0 and the front form dynamics, which is now known as the light-front dynamics (LFD) at δ = π/4. We present the formal derivation of the interpolating quantum electrodynamics (QED) in the canonical field theory approach and discuss the constraint fermion degree of freedom, which appears uniquely in the LFD. The constraint component of the fermion degrees of freedom in LFD results in the instantaneous contribution to the fermion propagator, which is genuinely distinguished from the ordinary equal-time forward and backward propagation of relativistic fermion degrees of freedom. As discussed recently, the helicity of the on-massshell fermion spinors in LFD is also distinguished from the ordinary Jacob-Wick helicity in the IFD with respect to whether the helicity depends on the reference frame or not. To exemplify the characteristic difference of the fermion propagator between IFD and LFD, we compute the helicity amplitudes of typical QED processes such as e~+e~- → γγ and eγ → eγ and present the whole landscape of the scattering amplitudes in terms of the frame dependence or the scattering angle dependence with respect to the interpolating angle dependence. Our analysis clarifies any conceivable confusion in the prevailing notion of the equivalence between the infinite momentum frame approach and the LFD.
机译:1949年,DIDAC提出的相对论动力学的即时形式和正面形式可以通过Δ= 0的即时形式动态(IFD)与正面形式动态之间的插值角参数δ连接,现在称为光线 - Δ=π/ 4的帧间动态(LFD)。我们在规范场理论方法中呈现内插量子电动力学(QED)的正式推导,并讨论了自由度的约束度,这在LFD中唯一似乎。 LFD中的FEREMION自由度的约束分量导致对FERMION传播者的瞬时贡献,这是真实地区分了与相对论的离费米子自由度的普通同等正向和向后传播。如最近所讨论的,LFD中的大质量壳FERMION旋转丝器的螺旋也与IFD中的普通jacob-芯螺旋区分开于螺旋是否取决于参考框架。为了举例说明IFD和LFD之间的FERMION传播者的特性差异,我们计算典型QED过程的肝脏振幅,例如E〜+ E〜 - →γγ和eγ→Eγ,并呈现散射幅度的整个景观帧依赖性或散射角度相对于内插角度依赖性依赖性。我们的分析阐明了无限动量框架方法与LFD之间的当量概念中的任何可能的混淆。

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  • 来源
    《Physical review, D》 |2018年第3期|共61页
  • 作者单位

    Department of Physics North Carolina State University Raleigh North Carolina 27695-8202 USA;

    Department of Physics North Carolina State University Raleigh North Carolina 27695-8202 USA;

    Department of Physics North Carolina State University Raleigh North Carolina 27695-8202 USA;

    Physics Department La Sierra University Riverside California 92505 USA and Instituto de Física Teórica-UNESP Universidade Estadual Paulista Rua Dr. Bento Teobaldo Ferraz 271-Bloco II-01140-070 S?o Paulo SP Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

    instant form dynamics (IFD); QCD; light-front dynamics (LFD);

    机译:即时形式动态(IFD);QCD;光前动态(LFD);

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