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Can particles really be in two places at once?

🕑 Added 2022-06-11 13:18:36 +0000 UTC
Can particles really be in two places at once?

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Rad Antonov

You are welcome Terry. I am glad you found it interesting. It struck me as one of those propositions that most physicists would probably say has to hold, so no one had bothered to prove it. Along the same lines, I'd say that the problem with quantum mechanics is that it works too well. We have yet to do an experiment that breaks it, but we suspect there is a deeper theory because of its probabilistic nature and implications for our notions of causality. Maybe we have to re-examine those, like what do we mean by time? Is it some universal measure proportional to entropy, an observer dependent coordinate governed by Lorentz transformations, or perhaps some emergent quantity that is only manifest as the result of fundamental, timeless interactions (to coin a new oxymoron)? Who knows. Absent new directions for experiments and data that don't fit, we'll be hard pressed to make progress.

Terry Bollinger

@Rad Antonov, @Richard Green: Nice ref, thanks for adding it. Regarding the paper's rather complicated argument that superpositions require "entanglement," sure. Einstein made a nice observation a century ago: Finding an electron at one wave function location "instantly" removes its other location superpositions. His point was that all wave functions became non-local the moment Born introduced his probability interpretation. That's what "finding" something is: An erasure of all other alternatives. The problem in the case of quantum mechanics is that the silly wave that describes where to look also "does things" that affect future history, such as reflection and diffraction. [2022-06-13.00:43 EDT Mon]

Hi Sabine, I have to disagree that the problem with describing Quantum Mechanics lies with language. The fault lies entirely with QM which in the interpretation presented is incoherent in terms of any meaningful physics. The wavefunction is only a mathematical probability generator; it does not in any sense present an accurate, coherent depiction of physical reality. When people try to translate the wavefunction into a physical description they start babbling incoherently about superposition of states and wave-particle duality and multiverses, etc. The wavefunction is math; it is not physics. I have a request or suggestion. I'd like to see you turn your sparkling intellect to a reconsideration of Bohmian mechanics. Thank you for the good work.


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