Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10259/10000
Título
Casimir Energy through Transfer Operators for Sine-Gordon Backgrounds
Autor
Publicado en
Progress of Theoretical and Experimental Physics. 2024, V. 2024, n. 5
Editorial
Oxford University Press
Fecha de publicación
2024-04
DOI
10.1093/ptep/ptae059
Resumen
The quantum vacuum interaction energy between a pair of semitransparent two-dimensional plates represented by Dirac delta potentials and its first derivative, embedded in the topological background of a sine-Gordon kink, is studied through an extension of the TGTG-formula (developped by O. Kenneth and I. Klich in the scattering approach). Quantum vacuum oscillations around the sine-Gordon kink solutions are interpreted as a quantum scalar field theory in the spacetime of a domain wall. Moreover, the relation between the phase shift and the density of states (the well-known Dashen–Hasslacher–Neveu or DHN formula) is also exploited to characterize the quantum vacuum energy.
Materia
Física
Physics
Versión del editor
Aparece en las colecciones