New interpretation of the atomic spectra of the hydrogen atom: a mixed mechanism of classical lc circuits and quantum wave-particle duality

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Main Author: H. Torres-Silva
Format: Artículo científico
Language:en
Published: Universidad de Tarapacá 2008
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author H. Torres-Silva
author_facet H. Torres-Silva
contents New interpretation of the atomic spectra of the hydrogen atom: a mixed mechanism of classical lc circuits and quantum wave-particle duality H. Torres-Silva Ingeniería Bohr atom chirality LC oscillator In this paper we study the energy conversion laws of the macroscopic harmonic LC oscillator, the electromagnetic wave(photon) and the hydrogen atom. As our analysis indicates, the energies of these apparently different systems obey exactlythe same energy conversion law. Based on our results and the wave-particle duality of electrons, we find that the hydrogenatom is, in fact, a natural chiral microscopic LC oscillator.In the framework of classical electromagnetic field theory we analytically obtain, for the hydrogen atom, the quantizedelectron orbit radiusr n=aon2, and quantized energy En=–RHhc/n2, (n = 1, 2, 3, · · ·), where a0 is the Bohr radius and RHis the Rydberg constant. Without the adaptation of any other fundamental principles of quantum mechanics, we presenta reasonable explanation of the polarization of photon, selection rules and Pauli exclusion principle. Our results alsoreveal an essential connection between electron spin and the intrinsic helical movement of electrons and indicate thatthe spin itself is the effect of quantum confinement 2008 artículo científico 0718-3291 https://www.redalyc.org/articulo.oa?id=77216103 en http://www.redalyc.org/revista.oa?id=772 Ingeniare. Revista Chilena de Ingeniería application/pdf Universidad de Tarapacá Ingeniare. Revista Chilena de Ingeniería (Chile) Num.1 Vol.16
format Artículo científico
id redalyc_77216103
institution Redalyc
language en
publishDate 2008
publisher Universidad de Tarapacá
spellingShingle New interpretation of the atomic spectra of the hydrogen atom: a mixed mechanism of classical lc circuits and quantum wave-particle duality
H. Torres-Silva
Ingeniería
Bohr atom
chirality
LC oscillator
New interpretation of the atomic spectra of the hydrogen atom: a mixed mechanism of classical lc circuits and quantum wave-particle duality H. Torres-Silva Ingeniería Bohr atom chirality LC oscillator In this paper we study the energy conversion laws of the macroscopic harmonic LC oscillator, the electromagnetic wave(photon) and the hydrogen atom. As our analysis indicates, the energies of these apparently different systems obey exactlythe same energy conversion law. Based on our results and the wave-particle duality of electrons, we find that the hydrogenatom is, in fact, a natural chiral microscopic LC oscillator.In the framework of classical electromagnetic field theory we analytically obtain, for the hydrogen atom, the quantizedelectron orbit radiusr n=aon2, and quantized energy En=–RHhc/n2, (n = 1, 2, 3, · · ·), where a0 is the Bohr radius and RHis the Rydberg constant. Without the adaptation of any other fundamental principles of quantum mechanics, we presenta reasonable explanation of the polarization of photon, selection rules and Pauli exclusion principle. Our results alsoreveal an essential connection between electron spin and the intrinsic helical movement of electrons and indicate thatthe spin itself is the effect of quantum confinement 2008 artículo científico 0718-3291 https://www.redalyc.org/articulo.oa?id=77216103 en http://www.redalyc.org/revista.oa?id=772 Ingeniare. Revista Chilena de Ingeniería application/pdf Universidad de Tarapacá Ingeniare. Revista Chilena de Ingeniería (Chile) Num.1 Vol.16
title New interpretation of the atomic spectra of the hydrogen atom: a mixed mechanism of classical lc circuits and quantum wave-particle duality
topic Ingeniería
Bohr atom
chirality
LC oscillator
url https://www.redalyc.org/articulo.oa?id=77216103