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Fourth dimension of the nucleon structure: Spacetime analysis of the timelike electromagnetic proton form factors

机译:核心结构的第四尺寸:时间般的电磁质子形状因子的时空分析

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摘要

As is well known, spacelike proton form factors expressed in the Breit frame may be interpreted as the Fourier transform of static space distributions of electric charge and current. In particular, the electric form factor is simply the Fourier transform of the charge distribution F(q) =∫e~(iq·r)ρ(r)d~3r.We do not have an intuitive interpretation of the same level of simplicity for the proton timelike form factor appearing in the reactions e~+e~- ↔ pp. However, one may suggest that, in the center-of-mass frame, where q_μx~μ = qt, a timelike electric form factor is the Fourier transform F(q) =∫e~(iqt)R(t)dt of a function R(t) expressing how the electric properties of the forming (or annihilating) proton-antiproton pair evolve in time. Here we analyze in depth this idea and show that the functions ρ(r) and R(t) can be formally written as the time and space integrals of a unique correlation function depending on both time and space coordinates.
机译:众所周知,可以将在布雷框架中表达的空间质子形状因子被解释为电荷和电流的静态空间分布的傅里叶变换。特别地,电形状因子只是电荷分布的傅立叶变换f(q)=∫e〜(iq·r)ρ(r)d〜3r.we没有对相同级别的直观解释对于在反应中出现的质子时代形状因子E〜+ e〜 - ↔PP。然而,可以提出在质量中心框架中,其中Q_μx〜μ= Qt,时间般的电形状因子是傅立叶变换f(q)=∫e〜(iqt)r(iqt)r(t)r(t)的r(t)表达如何在时间的成形(或湮灭)质子 - 反辐射对的电性质如何发展。在这里,我们深入地分析了这个想法,并表明功能ρ(r)和r(t)可以根据时间和空间坐标的独特相关函数的时间和空间积分正式编写。

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  • 来源
    《Physical Review C》 |2017年第2017期|015204.1-015204.11|共11页
  • 作者单位

    Dipartimento di Ingegneria dell'Informazione Universita degli Studi di Brescia via Branze 38 I-25123 Brescia Italy and Istituto Nazionale di Fisica Nucleare Sezione di Pavia via Bassi 6 Pavia Italy;

    IRFU CEA Universite Paris-Saclay 91191 Gif-sur-Yvette Cedex France;

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