scispace - formally typeset
Patent

Single-mode amplifiers and compressors based on multi-mode fibers

TLDR
In this paper, a singlemode is launched into a multi-mode (MM) optical fiber by matching the modal profile of the fundamental mode of the MM fiber with a diffraction-limited optical mode at the launch end.
Abstract
To amplify and compress optical pulses in a multi-mode (MM) optical fiber, a single-mode is launched into the MM fiber by matching the modal profile of the fundamental mode of the MM fiber with a diffraction-limited optical mode at the launch end. The fundamental mode is preserved in the MM fiber by minimizing mode-coupling by using relatively short lengths of step-index MM fibers with a few hundred modes and by minimizing fiber perturbations. Doping is confined to the center of the fiber core to preferentially amplify the fundamental mode, to reduce amplified spontaneous emission and to allow gain-guiding of the fundamental mode. Gain-guiding allows for the design of systems with length-dependent and power-dependent diameters of the fundamental mode. To allow pumping with high-power laser diodes, a double-clad amplifier structure is employed. For applications in nonlinear pulse-compression, self phase modulation and dispersion in the optical fibers can be exploited. High-power optical pulses may be linearly compressed using bulk optics dispersive delay lines or by chirped fiber Bragg gratings written directly into the SM or MM optical fiber. High-power cw lasers operating in a single near-diffraction-limited mode may be constructed from MM fibers by incorporating effective mode-filters into the laser cavity. Regenerative fiber amplifiers may be constructed from MM fibers by careful control of the recirculating mode. Higher-power Q-switched fiber lasers may be constructed by exploiting the large energy stored in MM fiber amplifiers.

read more

Citations
More filters
Patent

Secreted and Transmembrane Polypeptides and Nucleic Acids Encoding the Same

TL;DR: In this paper, the present invention is directed to secreted and transmembrane polypeptides and to nucleic acid molecules encoding those polyptides, and vectors and host cells comprising those nucleic amino acid sequences.
Patent

Single mode propagation in fibers and rods with large leakage channels

TL;DR: In this paper, Holey rods and fibers are used in many optical systems including optical amplification systems, lasers, short pulse generators, Q-switched lasers, etc., and may be used for example for micromachining.
Patent

Energy efficient, laser-based method and system for processing target material

TL;DR: In this article, an energy-efficient method and system for processing target material such as microstructures in a microscopic region without causing undesirable changes in electrical and/or physical characteristics of material surrounding the target material is provided.
Patent

Modular, high energy, widely-tunable ultrafast fiber source

TL;DR: In this article, a modular, compact and widely tunable laser system for the efficient generation of high peak and high average power ultrashort pulses is proposed, where the output of the fiber amplifiers can be expanded by using optimized pulse shapes, as well as dispersively broadened pulses.
Patent

Glass large-core optical fibers

TL;DR: In this article, the relative refractive index difference is characterized by (ni-n2)/ni, where Ni is the index of refraction of the cladding material in which the claddings are included, and n 2 is the average of the two indices.
References
More filters
Book

Theory of dielectric optical waveguides

TL;DR: The asymmetric slab waveguide weakly guiding optical fibers coupled mode theory applications of the coupled power theory theory of the directional coupler grating-assisted direction couplers approximate and numerical methods nonlinear effects as discussed by the authors.
Journal ArticleDOI

Optical power flow in multimode fibers

TL;DR: In this article, the authors investigated the relationship between loss, coupling, and delay differences among the modes of multimode fibers and provided a comprehensive description of the interrelations between them.
Journal ArticleDOI

Fabrication of low-loss optical fibres containing rare-earth ions

TL;DR: In this paper, the authors used an extended MCVD process to produce rare-earth ion fibers with very high absorption levels in the visible and near infra-red regions, without significantly compromising the low-loss characteristics of the fiber at wavelengths between 950 and 1400 nm.
Journal ArticleDOI

158-microJ pulses from a single-transverse-mode, large-mode-area erbium-doped fiber amplifier.

TL;DR: To the knowledge, these results represent the highest single-mode pulse energy extracted from any doped-fiber system.
Patent

Optical pulse amplification using chirped Bragg gratings

TL;DR: Chirped Bragg gratings are used both for stretching and compressing of ultrashort optical pulses in a chirped pulse amplification system, so that even femtosecond pulses can be stretched and recompressed back to their initial shape and duration.
Related Papers (5)