arXiv · 1506.08523
Quantum light propagation in longitudinally inhomogeneous media as a spatial Lewis-Ermakov physical invariance
Abstract
We study the propagation of quantum states of light in separable longitudinally inhomogeneous media. By means of the usual quantization approach this kind of media would lead to the unphysical result of quantum noise squeezing. This problem is solved by means of generalized canonical transformations in a comoving frame. Under these transformations the generator of propagation is a physical Lewis-Ermakov invariant in space which is quantized and, accordingly, a propagator consistent with experiments is obtained. Finally, we show that the net effect produced by propagation in these media is a quantum Gouy's phase with application in quantum interferometry.
Explore related subjects
Keep this discovery
David Barral, Jesús Liñares. 2015-06-29. Quantum light propagation in longitudinally inhomogeneous media as a spatial Lewis-Ermakov physical invariance. https://doi.org/10.1016/j.optcom.2015.09.052
Cite the original work for its findings. Save a collection to share your selection of sources.