The Surjective Mapping Conjecture and the Measurement Problem in Quantum Mechanics

Author:

Bopp Fritz WilhelmORCID

Abstract

Accepting a time-symmetric quantum dynamical world with ontological wave functions or fields, we follow arguments that naturally lead to a two-boundary interpretation of quantum mechanics. The usual two boundary picture is a valid superdeterministic interpretation. It has, however, one unsatisfactory feature. The random selection of a chosen measurement path of the universe is far too complicated. To avoid it, we propose an alternate two-boundary concept called surjective mapping conjecture. It takes as fundamental a quantum-time running forward like the usual time on the wave-function side and backward on the complex conjugate side. Unrelated fixed arbitrary boundary conditions at the initial and the final quantum times then determine the measurement path of the expanding and contracting quantum-time universe in the required way.

Publisher

MDPI AG

Subject

Physics and Astronomy (miscellaneous),General Mathematics,Chemistry (miscellaneous),Computer Science (miscellaneous)

Reference11 articles.

1. An intricate quantum statistical effect and the foundation of quantum mechanics;Bopp;arXiv,2019

2. Time Symmetric Quantum Mechanics and Causal Classical Physics ?

3. Modern Quantum Mechanics;Sakurai,2017

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5. Arrows of Time and Initial and Final Conditions in the Quantum Mechanics of Closed Systems Like the Universe;Hartle;arXiv,2020

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