Quantum Directional Zeno Rachet from PLI. Experiment and vehicle design
Authors/Creators
Description
We quantify the visibility drop of two-path interference as a function of recorded which-path
bits and present two experimental protocols that expose a sharp, reproducible “visibility
kink” predicted by the Principle of Least Information (PLI). We then propose and analyze
a macroscopic Directional Zeno Ratchet: a repeated weak-measurement sequence produc-
ing net drift with zero net classical impulse per cycle. Our framework is grounded in the
Janus–PLI construction in which a Euclidean hidden-time influence yields a completely pos-
itive, trace-preserving decoherence map and threshold-like suppression of off-diagonals once
an information cost is exceeded. We provide (i) cavity-QED and optomechanical protocols,
(ii) an information-audit method (mutual information in bits vs. measured visibility), and
(iii) quantitative “no classical impulse” bounds. Falsifiers are: absence of a visibility kink
and/or a ratchet that requires a nonzero classical force budget.
The Second paper outlines he theoretical design of a relayivistic vehucle based on the Directional Zeno Ratchet
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Quantum_Zeno_Rachet_PLI.pdf
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Additional details
Additional titles
- Alternative title
- Theory of Everything
- Alternative title
- Grand Unification
- Alternative title
- Quantum Gravity
- Alternative title
- Unified Field Theory
- Alternative title
- Quantum Mechanics
- Alternative title
- Cosmology
- Alternative title
- Theoretical Physics
- Alternative title
- Quantum Field Theory
- Alternative title
- General Relativity
Identifiers
- Other
- Part of 7D PLI 2t Grand Unification Model