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Dispersive Optical Bistability with Fluctuations

Physical Review A, 1981
We consider the phenomenon of dispersive optical bistability as an example of a non-equilibrium steady state lacking detailed balance. The Fokker Planck equation for the transmitted electromagnetic field is derived. For a special case of parameters we present an exact solution of the stationary distribution.
R. Graham, A. Schenzle
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Optical resonator with negative dispersion

Optics Letters, 1984
Analysis of an optical ring resonator consisting of a prism and two mirrors demonstrates that such a resonator can have adjustable dispersion of either sign. The dispersion is proportional to the second derivative of the optical path length in the resonator with respect to wavelength.
J P, Gordon, R L, Fork
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Optical biosensor with dispersion compensation

Optics Letters, 2005
Dispersion limits performance in many optical systems. In surface plasmon resonance (SPR) biosensors, the sensing area is an optical element in which the dispersion depends on the effective refractive index of the biochemical compounds to be measured.
W, Zong   +3 more
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Optical rotatory dispersion of sugar

Carbohydrate Research, 1966
Abstract The direction of optical rotatory dispersion curves in the far-ultraviolet spectral region has been related to configuration and conformation of the ring forms of sugars. Rules have been proposed for the study of ketoses, higher-carbon sugars, and furanoid forms of sugars.
Sasha Englard   +2 more
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Optical Dispersion by Wannier Excitons

Physical Review Letters, 1995
An analytical expression of the complex dielectric constant of Wannier excitons is obtained, which includes exactly the contributions of all bound and unbound states. It allows an improved description of the excitonic influence on the optical properties of semiconductors near the band gap, especially with respect to dispersion effects.
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Optical rotatory dispersion of carotenoids

J. Chem. Soc. C, 1969
The o.r.d. curves of ca. 40 carotenoids have been measured, chiefly in dioxan, over the range 400–200 nm. The chromophore in all cases is a conjugated polyene system which is perturbed by one or two chiral end-groups. The curves are analysed in terms of the simple additivity of the effects of end-groups, and the absolute configurations of several ...
L, Bartlett   +8 more
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Material dispersion in optical fibers

Applied Optics, 1979
A three-parameter description of optical fiber material dispersion is proposed which fits the available data and reveals the key roles played by bond length, lattice structure, chemical valence, average energy gap, and atomic mass. Using broadly applicable trends in electronic and phonon oscillator strengths, simple expressions are deduced for material
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Dispersion compensation for optical fiber systems

IEEE Communications Magazine, 1995
Much of the currently embedded optical fiber was originally designed for light with a wavelength of 1.3 microns. If this fiber is to be used with tomorrow's optically amplified, high-speed, long span-length lightwave system operating at 1.5 microns, the chromatic dispersion in the fiber must be compensated.
Robert M. Jopson, Alan H. Gnauck
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Optical Dispersion

Reviews of Modern Physics, 1932
S. A. Korff, G. Breit
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Impact of fiber dispersion on the performance of entanglement-based dispersive optics quantum key distribution

Journal of Electronic Science and Technology, 2021
Xu Liu, Yi-Dong Huang
exaly  

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