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OPTICAL FIBERS WITH NEGATIVE GROUP-VELOCITY DISPERSION IN THE VISIBLE

Optics News, 1988
In 1978, Hill et al.1 observed that subjecting optical fibers to illumination with green light from an Ar+ ion laser for approximately ten minutes could establish a grating along the fiber core. Reflectivities as high as 90% were achieved, with a bandwidth of approximately 200 MHz.
C P, Kuo   +4 more
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Group-velocity dispersion in a Bragg fiber

Journal of the Optical Society of America B, 2008
A comprehensive study of the group-velocity dispersion of the TE, TM, and hybrid modes in a Bragg fiber is presented by showing many numerical examples. The dispersion can be represented in a simple form as the sum of the material and the waveguide dispersions under the quarter-wave stack condition.
Jun-Ichi Sakai, Kazuki Kuramitsu
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Femtosecond group-velocity dispersion in optics

Optical Society of America Annual Meeting, 1990
Group velocity dispersion (GVD) is a well-known phenomenon that causes pulse broadening of femtosecond pulses propagating through dispersive materials. Femtosecond spectroscopy is becoming commonplace, and one must consider the effect of GVD in optical components such as mirrors, lenses, prisms, glass plates, glass cells, dielectric-coated mirrors ...
Yoshihiro Takiguchi, R. R. Alfano
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Group-velocity-dispersion-compensated propagation of short pulses in dispersive media

Optics Letters, 1996
An optical scheme based on a single angularly dispersive element is proposed for canceling group-velocity dispersion for pulse propagation in dispersive media. It is demonstrated experimentally that a pulse duration of 100 fs is preserved throughout the travel of a 248-nm-pulse through a 75-mm-long fused-silica slab.
S, Szatmári, P, Simon, M, Feuerhake
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Normal group-velocity dispersion Kerr frequency comb

Optics Letters, 2011
We show via numerical simulation that Kerr frequency combs can be generated in a nonlinear resonator characterized with normal group-velocity dispersion. We find the spectral shape of the comb and temporal envelope of the corresponding optical pulses formed in the resonator.
A B, Matsko, A A, Savchenkov, L, Maleki
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Dispersion analysis of a planar negative group velocity-transmission line

2007 European Radar Conference, 2007
The existence of a negative group velocity region in a stub-loaded transmission line is investigated, focusing on the reshaping experienced by amplitude modulated signals propagating in it.
Monti, Giuseppina, Tarricone, Luciano
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Dispersive pulse propagation and group velocity

The Journal of the Acoustical Society of America, 1993
The propagation of pulses in a dissipative medium is investigated both theoretically and experimentally. The theoretical work is based on the dissipative dispersion integral, and the measurements are made in an air-filled periodic waveguide (i.e., the dispersion is Bloch wave dispersion).
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Group velocity dispersion tailoring in optical structures

SPIE Proceedings, 1995
The control of the group velocity dispersion (GVD) in the waveguiding structures may be of crucial interest in optical communications. It may be achieved controlling one of the components of GVD, the waveguide dispersion, which depends on the geometry and the refractive index profiles of the guiding structures. In this paper the waveguide dispersion in
Elvio Valentinuzzi   +2 more
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Group-velocity dispersion in chirped-pulse amplifier

Acta Physica Sinica (Overseas Edition), 1996
By using the pulse propagation equation in the nonlinear dispersive medium, the effects of second- and third-order group-velocity dispersion on pulse evolution in the stretching, amplification and compressing are studied when chirped pulse amplification is applied to the pulses of a width
Shen Yu-zhen   +3 more
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Group velocity dispersion measurements of microstructured fibers

Technical Digest. Summaries of papers presented at the Conference on Lasers and Electro-Optics. Postconference Technical Digest (IEEE Cat. No.01CH37170), 2001
Summary form only given. There has been great recent interest in microstructured fibers that consist of a regular arrangement of holes stretched along silica or air core. These fibers can guide light either by opening a photonic bandgap or, in the case of silica core, by total internal reflection. Microstructure fibers have unique dispersion properties
D. Ouzounov   +7 more
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