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On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle

The VIolation of Pauli (VIP) experiment (and its upgraded version, VIP-2) uses the Ramberg and Snow (RS) method (Phys. Lett. B 1990, 238, 438) to search for violations of the Pauli exclusion principle in the Gran Sasso underground laboratory. The RS method consists of feeding a copper conductor with...

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Autores principales: Milotti, Edoardo, Bartalucci, Sergio, Bertolucci, Sergio, Bazzi, Massimiliano, Bragadireanu, Mario, Cargnelli, Michael, Clozza, Alberto, Curceanu, Catalina, De Paolis, Luca, Egger, Jean-Pierre, Guaraldo, Carlo, Iliescu, Mihail, Laubenstein, Matthias, Marton, Johann, Miliucci, Marco, Pichler, Andreas, Pietreanu, Dorel, Piscicchia, Kristian, Scordo, Alessandro, Shi, Hexi, Sirghi, Diana Laura, Sirghi, Florin, Sperandio, Laura, Vázquez Doce, Oton, Widmann, Eberhard, Zmeskal, Johann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7513035/
https://www.ncbi.nlm.nih.gov/pubmed/33265605
http://dx.doi.org/10.3390/e20070515
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author Milotti, Edoardo
Bartalucci, Sergio
Bertolucci, Sergio
Bazzi, Massimiliano
Bragadireanu, Mario
Cargnelli, Michael
Clozza, Alberto
Curceanu, Catalina
De Paolis, Luca
Egger, Jean-Pierre
Guaraldo, Carlo
Iliescu, Mihail
Laubenstein, Matthias
Marton, Johann
Miliucci, Marco
Pichler, Andreas
Pietreanu, Dorel
Piscicchia, Kristian
Scordo, Alessandro
Shi, Hexi
Sirghi, Diana Laura
Sirghi, Florin
Sperandio, Laura
Vázquez Doce, Oton
Widmann, Eberhard
Zmeskal, Johann
author_facet Milotti, Edoardo
Bartalucci, Sergio
Bertolucci, Sergio
Bazzi, Massimiliano
Bragadireanu, Mario
Cargnelli, Michael
Clozza, Alberto
Curceanu, Catalina
De Paolis, Luca
Egger, Jean-Pierre
Guaraldo, Carlo
Iliescu, Mihail
Laubenstein, Matthias
Marton, Johann
Miliucci, Marco
Pichler, Andreas
Pietreanu, Dorel
Piscicchia, Kristian
Scordo, Alessandro
Shi, Hexi
Sirghi, Diana Laura
Sirghi, Florin
Sperandio, Laura
Vázquez Doce, Oton
Widmann, Eberhard
Zmeskal, Johann
author_sort Milotti, Edoardo
collection PubMed
description The VIolation of Pauli (VIP) experiment (and its upgraded version, VIP-2) uses the Ramberg and Snow (RS) method (Phys. Lett. B 1990, 238, 438) to search for violations of the Pauli exclusion principle in the Gran Sasso underground laboratory. The RS method consists of feeding a copper conductor with a high direct current, so that the large number of newly-injected conduction electrons can interact with the copper atoms and possibly cascade electromagnetically to an already occupied atomic ground state if their wavefunction has the wrong symmetry with respect to the atomic electrons, emitting characteristic X-rays as they do so. In their original data analysis, RS considered a very simple path for each electron, which is sure to return a bound, albeit a very weak one, because it ignores the meandering random walks of the electrons as they move from the entrance to the exit of the copper sample. These complex walks bring the electrons close to many more atoms than in the RS calculation. Here, we consider the full description of these walks and show that this leads to a nontrivial and nonlinear X-ray emission rate. Finally, we obtain an improved bound, which sets much tighter constraints on the violation of the Pauli exclusion principle for electrons.
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spelling pubmed-75130352020-11-09 On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle Milotti, Edoardo Bartalucci, Sergio Bertolucci, Sergio Bazzi, Massimiliano Bragadireanu, Mario Cargnelli, Michael Clozza, Alberto Curceanu, Catalina De Paolis, Luca Egger, Jean-Pierre Guaraldo, Carlo Iliescu, Mihail Laubenstein, Matthias Marton, Johann Miliucci, Marco Pichler, Andreas Pietreanu, Dorel Piscicchia, Kristian Scordo, Alessandro Shi, Hexi Sirghi, Diana Laura Sirghi, Florin Sperandio, Laura Vázquez Doce, Oton Widmann, Eberhard Zmeskal, Johann Entropy (Basel) Article The VIolation of Pauli (VIP) experiment (and its upgraded version, VIP-2) uses the Ramberg and Snow (RS) method (Phys. Lett. B 1990, 238, 438) to search for violations of the Pauli exclusion principle in the Gran Sasso underground laboratory. The RS method consists of feeding a copper conductor with a high direct current, so that the large number of newly-injected conduction electrons can interact with the copper atoms and possibly cascade electromagnetically to an already occupied atomic ground state if their wavefunction has the wrong symmetry with respect to the atomic electrons, emitting characteristic X-rays as they do so. In their original data analysis, RS considered a very simple path for each electron, which is sure to return a bound, albeit a very weak one, because it ignores the meandering random walks of the electrons as they move from the entrance to the exit of the copper sample. These complex walks bring the electrons close to many more atoms than in the RS calculation. Here, we consider the full description of these walks and show that this leads to a nontrivial and nonlinear X-ray emission rate. Finally, we obtain an improved bound, which sets much tighter constraints on the violation of the Pauli exclusion principle for electrons. MDPI 2018-07-09 /pmc/articles/PMC7513035/ /pubmed/33265605 http://dx.doi.org/10.3390/e20070515 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Milotti, Edoardo
Bartalucci, Sergio
Bertolucci, Sergio
Bazzi, Massimiliano
Bragadireanu, Mario
Cargnelli, Michael
Clozza, Alberto
Curceanu, Catalina
De Paolis, Luca
Egger, Jean-Pierre
Guaraldo, Carlo
Iliescu, Mihail
Laubenstein, Matthias
Marton, Johann
Miliucci, Marco
Pichler, Andreas
Pietreanu, Dorel
Piscicchia, Kristian
Scordo, Alessandro
Shi, Hexi
Sirghi, Diana Laura
Sirghi, Florin
Sperandio, Laura
Vázquez Doce, Oton
Widmann, Eberhard
Zmeskal, Johann
On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle
title On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle
title_full On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle
title_fullStr On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle
title_full_unstemmed On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle
title_short On the Importance of Electron Diffusion in a Bulk-Matter Test of the Pauli Exclusion Principle
title_sort on the importance of electron diffusion in a bulk-matter test of the pauli exclusion principle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7513035/
https://www.ncbi.nlm.nih.gov/pubmed/33265605
http://dx.doi.org/10.3390/e20070515
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