Confinement effects of external fields and topological defect on hydrogen atom in a quantum-plasma environment



Título del documento: Confinement effects of external fields and topological defect on hydrogen atom in a quantum-plasma environment
Revista: Revista mexicana de física
Base de datos: PERIÓDICA
Número de sistema: 000454120
ISSN: 0035-001X
Autores: 1
2
Instituciones: 1Cross River University of Technology, Department of Physics, Calabar, Cross River. Nigeria
2University of Port Harcourt, Department of Physics, Choba, Rivers. Nigeria
Año:
Periodo: Sep-Oct
Volumen: 68
Número: 5
País: México
Idioma: Inglés
Tipo de documento: Artículo
Enfoque: Analítico, teórico
Resumen en inglés This study looks at the confinement effects of Aharonov-Bohm (AB) flux and magnetic fields, as well as topological defects in a quantum plasma, on the hydrogen atom. The joint effects show that the system is extremely attractive. Furthermore, as we have shown, the joint effect of the fields is greater than the sum of the individual effects, resulting in a significant change in the system’s bound state energy. The magnetic field can be used as a control parameter or booster, whereas the topological defect and the AB field are needed to hold the hydrogen atom in quantum plasmas at a low energy. The findings of our research may be extended to atomic structure and plasma collisions
Disciplinas: Física y astronomía
Palabras clave: Física,
Atomo de hidrógeno,
Defectos topológicos
Keyword: Campos magnéticos,
Physics,
Hydrogen atom,
Topological defects,
Magnetic fields
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