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Quantum states with negative energy density in the Dirac field and quantum inequalities

机译:Dirac场中具有负能量密度的量子态和量子不等式

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摘要

Energy densities of the quantum states that are superposition of two multi-electron-positron states are examined. It is shown that the energy densities can be negative only when two multi-particle states have the same number of electrons and positrons or when one state has one more electron-positron pair than the other. In the cases in which negative energy could arise, we find that the energy is that of a positive constant plus a propagating part which oscillates between positive and negative, and the energy can dip to negative at some places at for a certain period of time if the quantum states are properly manipulated. It is demonstrated that the negative energy densities satisfy the quantum inequality. Our results also reveal that for a given particle content, the detection of negative energy is an operation that depends on the frame where any measurement is to be performed. This suggests that the sign of energy density for a quantum state may be a coordinate-dependent quantity in quantum theory.
机译:研究了两个多电子-正电子态叠加的量子态的能量密度。结果表明,只有当两个多粒子态具有相同数量的电子和正电子时,或者一个态比另一态多一个电子-正电子时,能量密度才能为负。在可能产生负能量的情况下,我们发现该能量是一个正常数,加上一个在正负之间振荡的传播部分,并且如果在某些时间段内该能量可能在某些位置下降到负数适当地控制了量子态。证明了负能量密度满足量子不等式。我们的结果还表明,对于给定的粒子含量,负能量的检测取决于要进行任何测量的框架。这表明在量子理论中,量子态的能量密度符号可能是与坐标有关的量。

著录项

  • 作者

    Yu, H; Shu, W;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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