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Journal ArticleDOI

Goos–Hänchen Shift from Cold and Hot Atomic Media Using Kerr Nonlinearity

TLDR
In this paper, the Goos-Hanchen shifts of a probe light field in a four-level tripod-type cold and hot atomic medium were studied in reflection and transmission beams in the presence of the coherent Kerr effect and the Doppler broadening effect.
Abstract
We study and examine the Goos–Hanchen shifts of a propagating probe light field in a four-level tripodtype cold and hot atomic medium. The behavior of Goos–Hanchen shifts is studied in reflection and transmission beams in the presence of the coherent Kerr effect and the Doppler broadening effect. We observe that these shifts can be controlled by the relative propagation direction of the control field to that of the probe field.

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Tunnelling based birefringent rotary photon dragging through induced chiral medium

TL;DR: In this article, the authors investigated the control and modification of divergence angle and birefringent rotary photon drags under the effect of quantum tunnelling and found that the rotary drags can be modified with the strength of tunneling frequencies.
References
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Journal ArticleDOI

Ein neuer und fundamentaler Versuch zur Totalreflexion

F. Goos, +1 more
- 01 Jan 1947 - 
TL;DR: The Maxwellsche Theorie lehrt, das bei totalreflexion Lichtenergie in das dunnere Medium eindringt. Experimentell wurde bisher diese Energie immer nur im dunneren Medium selbst nachgewiesen, dadurch Licht abgezapft and somit die totale Reflexion zunichte gemacht as discussed by the authors.
Journal ArticleDOI

Goos-Hänchen shift in negatively refractive media

TL;DR: The Goos-Hänchen shift is calculated when total internal reflection occurs at an interface between "normal" and negatively refractive media and is negative, consistent with the direction of energy flow in the positively refractive medium.
Journal ArticleDOI

Large and negative Goos–Hänchen shift near the Brewster dip on reflection from weakly absorbing media

TL;DR: Applying Artmann's formula to a light beam in the TM state of wave polarization, it is shown analytically the existence of a large and negative Goos-Hänchen shift near the angle of the Brewster dip on reflection from a weakly absorbing semi-infinite medium.
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