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Título
Resonant van-der-Waals Interaction: net harmonic force on a two-atom system
Autor
Director o Tutor
Año del Documento
2019
Titulación
Máster en Física
Abstract
We perform a time-dependent quantum computation of the van der Waals interaction between two free identical atoms, one of which is initially excited. Making use of the perturbative 
 approach developed in Refs. It is shown that, in addition to an off-resonant interaction force 
 between the two atoms, the two-atom system is subjected to a net force which oscillates 
 periodically in time. We prove that the apparently missing momentum is carried by the resonant 
 photons which mediate the periodic transfer of the excitation between the atoms, guaranteeing this 
 way the satisfaction of the action-reaction principle in the quantum realm. Remarkably, since 
 mediating photons remain virtual throughout the process, their momentum is virtual and thus 
 unaccessible experimentally. Ultimately, as the de-excitation of the system takes place, that 
 momentum turns into actual when carried off by the real photon which is emitted spontaneously. 
 Hence, the directionality of such an emission constitutes a vestige of the net force acting upon 
 the two-atom system while excited.
Palabras Clave
Quantum optics
Quantum electrodynamics
Van der Waals forces
Departamento
Departamento de Física Teórica, Atómica y Óptica
Idioma
eng
Derechos
openAccess
Aparece en las colecciones
- Trabajos Fin de Máster UVa [7267]
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La licencia del ítem se describe como Attribution-NonCommercial-NoDerivatives 4.0 Internacional









