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Relativistic QFT from a Bohmian perspective: A proof of concept

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arxiv 2205.05986 v2 pith:ATLV2MEL submitted 2022-05-12 quant-ph hep-th

classification quant-phhep-th
keywords bohmianpredictionsrelativistictheorylorentzmakesmeasurablemechanics
verification ladder T0 review T1 audit T2 compute T3 formal
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Since Bohmian mechanics is explicitly nonlocal, it is widely believed that it is very hard, if not impossible, to make Bohmian mechanics compatible with relativistic quantum field theory (QFT). I explain, in simple terms, that it is not hard at all to construct a Bohmian theory that lacks Lorentz covariance, but makes the same measurable predictions as relativistic QFT. All one has to do is to construct a Bohmian theory that makes the same measurable predictions as QFT in one Lorentz frame, because then standard relativistic QFT itself guarantees that those predictions are Lorentz invariant. I first explain this in general terms, then I describe a simple Bohmian model that makes the same measurable predictions as the Standard Model of elementary particles, after which I give some hints towards a more fundamental theory beyond Standard Model. Finally, I present a short story telling how my views of fundamental physics in general, and of Bohmian mechanics in particular, evolved over time.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Time-Symmetric Variational Reformulation of Nonrelativistic Quantum Mechanics

    quant-ph 2025-12 reject novelty 4.0 of 10

    A Fisher-information action can reproduce the Schrödinger equation, but the claimed derivation of the Born rule without collapse assumes the probability interpretation it purports to derive.

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