Artículos de revistas
Quantum chameleons
Fecha
2019-05-15Registro en:
Physical Review D, v. 99, n. 10, 2019.
2470-0029
2470-0010
10.1103/PhysRevD.99.104049
2-s2.0-85066445114
Autor
CNRS
California Institute of Technology
Universidade Estadual Paulista (Unesp)
Institución
Resumen
We initiate a quantum treatment of chameleonlike particles, deriving classical and quantum forces directly from the path integral. It is found that the quantum force can potentially dominate the classical one by many orders of magnitude. We calculate the quantum chameleon pressure between infinite plates, which is found to interpolate between the Casimir and the integrated Casimir-Polder pressures, respectively in the limits of full screening and no screening. To this end we calculate the chameleon propagator in the presence of an arbitrary number of one-dimensional layers of material. For the Eöt-Wash experiment, the five-layer propagator is used to take into account the intermediate shielding sheet, and it is found that the presence of the sheet enhances the quantum pressure by two orders of magnitude. As an example of implication, we show that in both the standard chameleon and symmetron models, large and previously unconstrained regions of the parameter space are excluded once the quantum pressure is taken into account.