Pinhole interference in three-dimensional fuzzy space
- URL: http://arxiv.org/abs/2212.01449v2
- Date: Thu, 8 Dec 2022 13:59:35 GMT
- Title: Pinhole interference in three-dimensional fuzzy space
- Authors: Dario Trinchero and Frederik G. Scholtz
- Abstract summary: We investigate a quantum-to-classical transition which arises naturally within the fuzzy sphere formalism for non-commutative quantum mechanics.
We focus on treating a two-pinhole interference configuration within this formalism, as it provides an illustrative toy model for which this transition is readily observed and quantified.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We investigate a quantum-to-classical transition which arises naturally
within the fuzzy sphere formalism for three-dimensional non-commutative quantum
mechanics. This transition may be understood as the mechanism of decoherence,
but without requiring an additional external heat bath. We focus on treating a
two-pinhole interference configuration within this formalism, as it provides an
illustrative toy model for which this transition is readily observed and
quantified. Specifically, we demonstrate a suppression of the quantum
interference effects for objects passing through the pinholes with
sufficiently-high energies or numbers of constituent particles.
Our work extends a similar treatment of the double slit experiment by
Pittaway and Scholtz (2021) within the two-dimensional Moyal plane, only it
addresses two key shortcomings that arise in that context. These are, firstly
that the interference pattern in the Moyal plane lacks the expected reflection
symmetry present in the pinhole setup, and secondly that the
quantum-to-classical transition manifested in the Moyal plane occurs only at
unrealistically high velocities and/or particle numbers. Both of these issues
are solved in the fuzzy sphere framework.
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