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Main Authors: Carmeli, I., Mujica, Vladimiro, Leitus, Gregory, Shechter, Pini, Zalevsky, Zeev, Richter, Shachar
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2412.17553
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author Carmeli, I.
Mujica, Vladimiro
Leitus, Gregory
Shechter, Pini
Zalevsky, Zeev
Richter, Shachar
author_facet Carmeli, I.
Mujica, Vladimiro
Leitus, Gregory
Shechter, Pini
Zalevsky, Zeev
Richter, Shachar
contents The work investigates enantiomers of chiral organo-metallic particles that exhibit a collective memory effect. Under the influence of magnetic field millions of particles in solution form macroscopic shapes and when dispersed again at zero field they return to their original shape. The charge and magnetic behaviors of the particles are strongly dependent on the handedness of the chiral molecule in the hybrid organometallic compound. The microparticles forming the shaped structures are collectively coupled under the influence of long-range van der Waals exchange interactions which govern the collective macroscopic structure. There is striking evidence that the nonlocal quantum exchange interactions between particles persist up to a distance of 10 meters at temperatures above 00C. The forces which govern the collective memory effect and shape the macroscopic structure therefore allow to visualize quantum phenomena which extend the classical causality notion into an expanded nonlocal reality in which the quantum fields of the particles exist simultaneously at separated points in space. We propose that the observations are attributed to chiral electronic states dependent van der Waals interactions coupled to vacuum fluctuations.
format Preprint
id arxiv_https___arxiv_org_abs_2412_17553
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Emerging non-local quantum phenomena in a classical system of organo-metallic microparticles
Carmeli, I.
Mujica, Vladimiro
Leitus, Gregory
Shechter, Pini
Zalevsky, Zeev
Richter, Shachar
Chemical Physics
The work investigates enantiomers of chiral organo-metallic particles that exhibit a collective memory effect. Under the influence of magnetic field millions of particles in solution form macroscopic shapes and when dispersed again at zero field they return to their original shape. The charge and magnetic behaviors of the particles are strongly dependent on the handedness of the chiral molecule in the hybrid organometallic compound. The microparticles forming the shaped structures are collectively coupled under the influence of long-range van der Waals exchange interactions which govern the collective macroscopic structure. There is striking evidence that the nonlocal quantum exchange interactions between particles persist up to a distance of 10 meters at temperatures above 00C. The forces which govern the collective memory effect and shape the macroscopic structure therefore allow to visualize quantum phenomena which extend the classical causality notion into an expanded nonlocal reality in which the quantum fields of the particles exist simultaneously at separated points in space. We propose that the observations are attributed to chiral electronic states dependent van der Waals interactions coupled to vacuum fluctuations.
title Emerging non-local quantum phenomena in a classical system of organo-metallic microparticles
topic Chemical Physics
url https://arxiv.org/abs/2412.17553