There are two solutions to the equations of Feynman’s Quantum Electrodynamics (QED): the newly discovered solution is free of quantum weirdness

Jeffrey H. Boyd
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Abstract

No one previously noticed there is a second solution to the equations of Richard Feynman’s Quantum Electrodynamics (QED). It makes identical predictions in the lab. The new solution (Reverse-QED) is closer to nature: it is free of quantum weirdness. For example, it eliminates Schrödinger’s cat. This article is the first time the equations of R-QED have been published. The R-QED amplitude is the negative of Feynman’s amplitude. Because of the Born rule, both amplitude and negative amplitude, when squared, produce the same probability to be tested against empirical data. If you were to measure the distance from Los Angeles to New York City with R-QED’s accuracy, it would be exact to the breadth of a human hair. If reality corresponds to the newly discovered R-QED equations, but scientists use the old QED equations, the result would be predictions for the lab that are precisely accurate, but scientists would be unable to construct a coherent picture of the quantum world. R-QED is based on a different picture of how the quantum world is organized. Experiments, including a neutron interferometer experiment we review, show that particles follow waves backward. R-QED integrates in the same direction that the waves travel.
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费曼量子电动力学(QED)方程有两种解:新发现的解没有量子奇异性
以前没有人注意到理查德·费曼的量子电动力学(QED)方程还有第二个解。它在实验室里做出了相同的预测。新的解决方案(逆qed)更接近自然:它没有量子的怪异。例如,它消除了Schrödinger的猫。本文是首次发表R-QED方程。R-QED振幅是负的费曼振幅。由于玻恩法则,振幅和负振幅,当平方时,产生相同的概率来检验经验数据。如果你用R-QED的精度测量从洛杉矶到纽约的距离,它将精确到人类头发的宽度。如果现实符合新发现的R-QED方程,但科学家使用旧的QED方程,那么结果将是实验室的预测非常准确,但科学家将无法构建量子世界的连贯图像。R-QED基于量子世界如何组织的不同图景。实验,包括我们回顾的中子干涉仪实验,表明粒子是向后跟随波的。R-QED的积分方向与波的传播方向相同。
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