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La mecánica de creación de pares electrón-positrón en el modelo tresespacial


Michaud, André


Research Papers


Quantum Theory / Particle Physics



Date Published:

April 11, 2021




geometría tresespacial, par electrón-positrón, fotón de 1,022 MeV, masa, materialización, signo de la carga


Este artículo expone la mecánica de conversión, en la geometría espacial de los 3- espacios, de un fotón electromagnético de energía 1.022 MeV o más en un par electrón-positrón, cuando tal fotón es desestabilizado rozando con una partícula masiva tal un núcleo de átomo, este fotón electromagnético sin masa y aparentemente sin carga se convirtiendo en un par de partículas cargadas en oposición y que cada una de las cuales teniendo una masa de 0.511 MeV/c2. Un proceso alternativo fue también descubierto experimentalmente en 1997, que implica converger dos haces de fotones fuertemente colimados hacia un punto en el espacio, uno de los haces que contiene fotones que sobrepasan el umbral de energía de 1.022 MeV. En este último caso, pares electrón-positrón fueron creadas sin que ninguna partícula masiva desestabilizadora sea en las cercanías, lo que significa que una interacción que implica solamente fotones es suficiente para provocar la desestabilización, echando una luz totalmente nueva sobre el origen posible del universo, ya que tenemos ahora la prueba material de que la materia masiva puede ser creada a partir de energía pura no masiva. Estos dos procesos observados por conversión de fotones electromagnéticos en pares electrón-positrón establecen el nivel de energía de 1.022 MeV como el umbral a partir del cual los fotones sin masa son susceptibles de ser desestabilizados para convertirse en pares de partículas masivas.


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