The conditions of local Lorentz invariance (LLI) breakdown, obtained during neutron emission from a sonicated cylindrical bar of AISI 304 steel, were reproduced in a system made of a mole of mercury. After 3 min, a part of the liquid transformed into solid state material, in which isotopes were found with both higher and lower atomic mass with respect to the starting material. Changes in the atomic weight without production of gamma radiation and radionuclides are made possible by deformed space-time reactions.

Nuclear metamorphosis in mercury

Cardone F;Cardone F;Guerriero E;
2016

Abstract

The conditions of local Lorentz invariance (LLI) breakdown, obtained during neutron emission from a sonicated cylindrical bar of AISI 304 steel, were reproduced in a system made of a mole of mercury. After 3 min, a part of the liquid transformed into solid state material, in which isotopes were found with both higher and lower atomic mass with respect to the starting material. Changes in the atomic weight without production of gamma radiation and radionuclides are made possible by deformed space-time reactions.
2016
Istituto sull'Inquinamento Atmosferico - IIA
Istituto per lo Studio dei Materiali Nanostrutturati - ISMN
Deformed space-time reactions
Local Lorentz invariance breakdown
Local Lorentz invariance violation
Matter transformations
Nuclear reactions
Piezo-nuclear reactions, ultrasound
Second law of thermodynamics
Solidification
Transmutations
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/334023
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