A light beam normally incident upon an uniformly moving dielectric medium is, in general, subject to bendings due to a transverse Fresnel-Fizeau light drag effect. In most familiar dielectrics, the magnitude of this bending effect is very small and hard to detect. Yet, the effect can be dramatically enhanced in strongly dispersive media where slow group velocities in the m/s range have been recently observed taking advantage of the electromagnetically induced transparency effect. In addition to the usual downstream drag that takes place for positive group velocities, we discuss a significant anomalous upstream drag which is expected to occur for negative group velocities. Furthermore, for sufficiently fast speeds of the medium, higher-order dispersion terms are found to play an important role and to be responsible for light propagation along curved paths or the restoration of the time and space coherence of an incident noisy beam. The physics underlying this class of slow-light effects is thoroughly discussed.

Transverse Fresnel-Fizeau drag effect in strongly dispersive media

ARTONI, Maurizio;
2003-01-01

Abstract

A light beam normally incident upon an uniformly moving dielectric medium is, in general, subject to bendings due to a transverse Fresnel-Fizeau light drag effect. In most familiar dielectrics, the magnitude of this bending effect is very small and hard to detect. Yet, the effect can be dramatically enhanced in strongly dispersive media where slow group velocities in the m/s range have been recently observed taking advantage of the electromagnetically induced transparency effect. In addition to the usual downstream drag that takes place for positive group velocities, we discuss a significant anomalous upstream drag which is expected to occur for negative group velocities. Furthermore, for sufficiently fast speeds of the medium, higher-order dispersion terms are found to play an important role and to be responsible for light propagation along curved paths or the restoration of the time and space coherence of an incident noisy beam. The physics underlying this class of slow-light effects is thoroughly discussed.
2003
Enti pubb. di ricerca ital.
PE2_6 Electromagnetism
PE2_7 Atomic, molecular physics
PE2_9 Optics, non-linear optics and nano-optics
Esperti anonimi
Inglese
Internazionale
STAMPA
68
63819
63830
12
ELECTROMAGNETICALLY INDUCED TRANSPARENCY; MOVING ASTROPHYSICAL PLASMAS; GROUP-VELOCITY; SLOW LIGHT; PULSE-PROPAGATION; NONLINEAR OPTICS; ATOMIC MEDIUM; RADIATION; ULTRASLOW; PASSAGE
Altre fonti
no
4
info:eu-repo/semantics/article
262
I., Carusotto; Artoni, Maurizio; G., LA ROCCA; F., Bassani
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11379/22219
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