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M. A. Bouchene

Publications and source records attributed to M. A. Bouchene.

4 recordsLinked to original sources

Illustrating Special-Relativity Phenomena via Gaussian Ray Optics

We highlight the correspondence between one-dimensional Lorentz transformations, which relate events observed from two distinct inertial reference frames, and ray transfer transformations in Gaussian optics. Specifically, we identify optical systems whose transfer matrices reproduce the mathematical structure of the Lorentz transformation. Within this framework, we show that fundamental effects of special relativity as time dilatation, length contraction and loss of synchronicity find a direct counterpart in the behavior of light rays deviated by a diverging lens, thereby providing a novel and illustrative optical equivalence of relativistic phenomena. This article is intended for a broad audience of physicists. The correspondence described is general and may interest students with a moderate background in special relativity and optics, as well as teachers in the corresponding fields.

physics.optics

Phase control of transmission and reflection in a sample of duplicated two-level systems driven by a stationary control field

In this article, we study the optical response of a duplicated two-level atomic medium subjected to a stationary control field and a weak co-propagating probe field, orthogonally polarized to each other. We show that both the reflected and transmitted components of the probe can be absorbed or amplified. Furthermore, for moderate optical depths, the reflection and transmission factors are controlled by the relative phase between the control and probe fields, making the configuration we present here promising for the development of optical devices. We also determine the exact conditions under which reflection and transmission factors can be controlled by the relative phase between the control and probe fields.

quant-ph

One-photon wavepacket interacting with two separated atoms in a one-dimensional waveguide: Influence of virtual photons

We present a theoretical study of one photon wave-packet scattered by two atoms in one dimensional waveguide. We investigate the role of non rotating wave approximation terms to take into account correctly for the effects of the virtual photons that are exchanged between the atoms. These terms are shown to influence drastically the reflected and the transmitted fields, imposing strict constraints on their temporal envelopes.

quant-ph

Slowing light through Zeeman Coherence Oscillations in a duplicated two-level system

We present the theory of a new method to slow a linearly polarized probe pulse as it propagates through a duplicated two-level system driven by an orthogonally polarized control field. The method makes use of Zeeman coherence oscillations (CZO) that arise in the atomic system because of the spatial and temporal modulation of the total polarization. This method exhibits properties similar to those that rely on the electromagnetically induced transparency (EIT) but without the existence of any trapping state. We demonstrated also the propagation of a dark polariton in the medium

physics.optics