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Locality in the creation of electron-positron pairs

机译:电子-正电子对产生的局部性

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We examine the mathematical solutions of the Dirac equation to predict the spontaneous electron-positron pair creation from the vacuum. The Dirac equation contains a position and time-dependent scalar potential to approximate the effect of an external force on the vacuum. We focus on forces that are localized in space as well as in time and find that the resulting creation process is also localized in time but delocalized in space. This illustrates that the Dirac equation can show nonlocal behavior as it predicts that particles can be created even in spatial regions where the force is zero. We also examine the spatial distribution of the created particles and show that for spatially extended force fields it is proportional to the square of the position dependence of the force. But when the force field is narrower than the Compton wavelength, the created electron density approaches a universal shape invariant form that is independent of the strength of the force for sufficiently weak field strength.
机译:我们检查Dirac方程的数学解,以预测真空中自发的电子-正电子对的产生。狄拉克方程包含一个位置和时间相关的标量电势,以近似外力对真空的影响。我们关注于在空间和时间上都局部化的力,发现所产生的创建过程也在时间上局部化但在空间上局部化。这说明Dirac方程可以显示非局部行为,因为它预测即使在力为零的空间区域也可以创建粒子。我们还检查了所创建粒子的空间分布,并表明对于空间扩展的力场,它与力的位置依赖性的平方成比例。但是,当力场比康普顿波长窄时,所产生的电子密度接近通用形状不变形式,该形式不依赖于力的强度而获得足够弱的场强。

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