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Mass, energy, and the electron

机译:质量,能量和电子

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摘要

The two-component solutions of the Dirac equation currently in use are not separately a particle equation or an antiparticle equation. We present a unitary transformation that uncouples the four-component, force-free Dirac equation to yield a two-component spinor equation for the force-free motion of a relativistic particle and a corresponding two-component, time-reversed equation for an antiparticle. The particle-antiparticle nature of the two equations is established by applying to the solutions of these two-component equations criteria analogous to those applied for establishing the four-component particle and antiparticle solutions of the four-component Dirac equation. Wave function solutions of our two-component particle equation describe both a right and a left circularly polarized particle. Interesting characteristics of our solutions include spatial distributions that are confined in extent along directions perpendicular to the motion, without the artifice of wave packets, and an intrinsic chirality (handedness) that replaces the usual definition of chirality for particles without mass. Our solutions demonstrate that both the rest mass and the relativistic increase in mass with velocity of the force-free electron are due to an increase in the rate of Zitterbewegung with velocity. We extend this result to a bound electron, in which case the loss of energy due to binding is shown to decrease the rate of Zitterbewegung. (c) 2005 Elsevier Inc. All rights reserved.
机译:当前使用的狄拉克方程的两组分解决方案不是粒子方程或反粒子方程。我们提出了一个统一的变换,该变换将四分量,无力的狄拉克方程解耦,以产生相对论粒子的无力运动的两分量旋转子方程和反粒子的相应的两分量,时间反向方程。通过将类似于建立四组分Dirac方程的四组分粒子和反粒子溶液所应用的标准应用于这些两组分方程的解,可以建立两个方程的粒子-反粒子性质。我们的两组分粒子方程的波动函数解描述了右旋和左旋圆极化粒子。我们解决方案的有趣特征包括沿垂直于运动方向在一定范围内限制空间分布,而没有波包的packets节,以及固有的手征性(惯性)取代了无质量粒子的手征性的常规定义。我们的解决方案表明,静止质量和相对论质量随无力电子速度的增加都是由于Zitterbewegung速率随速度的增加而引起的。我们将此结果扩展到结合的电子,在这种情况下,由于结合而导致的能量损失显示出降低了Zitterbewegung的速率。 (c)2005 Elsevier Inc.保留所有权利。

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