# Geometry of Time, Axiom of Choice and Neuro-Biological Quantum Zeno   Effect

**Authors:** Moninder Singh Modgil

arXiv: 0704.1054 · 2007-05-23

## TL;DR

This paper explores the role of the axiom of choice in quantum measurement, the influence of consciousness on quantum states, and predicts a neuro-biological quantum Zeno effect and micro-black-hole in the brain.

## Contribution

It introduces a novel connection between consciousness, quantum measurement, and the axiom of choice, proposing a neuro-biological quantum Zeno effect and a micro-black-hole in the brain.

## Key findings

- Quantum brain states may freeze under continuous observation.
- Consciousness influences material outcomes via quantum processes.
- A micro-black-hole in the brain is predicted, explaining mass-loss during death.

## Abstract

Role of axiom of choice in quantum measurement is highlighted by suggesting that the conscious observer chooses the outcome from a mixed state. Further, in a periodically repeating universe, these outcomes must be pre-recorded within the non-physical conscious observers, which precludes free will. Free will however exists in a universe with open time, It is suggested that psychology's binding problem is connected with Cantor's original definition of set. Influence of consciousness on material outcome through quantum processes is discussed and interesting constraints derived. For example, it is predicted that quantum mechanical brain states should get frozen if monitored at sufficiently small space-time intervals - a neuro-biological version of the so called quantum zeno effect, which has been verified in domain of micro-physics. Existence of a very small micro-mini-black-hole in brain is predicted as a space-time structural interface between consciousness and brain, whose vaporization explains mass-loss reported in weighing experiments, conducting during the moments of death.

## Full text

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## References

50 references — full list in the complete paper: https://tomesphere.com/paper/0704.1054/full.md

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Source: https://tomesphere.com/paper/0704.1054