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Brillouin scattering

About: Brillouin scattering is a research topic. Over the lifetime, 11426 publications have been published within this topic receiving 178306 citations.


Papers
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Journal ArticleDOI
TL;DR: In this article, a new technique for suppressing the stimulated Brillouin scattering (SBS) using isolator(s) is proposed; the performance of suppression and the optimal positions of isolators are discussed.
Abstract: A new technique for suppressing the stimulated Brillouin scattering (SBS) using isolator(s) is proposed; the performance of suppression and the optimal positions of isolators are discussed. In a preliminary experiment using one isolator, the threshold power increased by 1.2 dB

45 citations

Journal ArticleDOI
TL;DR: A high power single frequency 1030 nm fiber laser with near-diffraction-limited beam quality based on a polarization-maintaining tapered Yb-doped fiber (T-YDF), which is the highest output power of all-fiberized single frequency fiber amplifiers.
Abstract: In this paper, we report a high power single frequency 1030 nm fiber laser with near-diffraction-limited beam quality based on a polarization-maintaining tapered Yb-doped fiber (T-YDF). The T-YDF has advantages of effectively suppressing stimulated Brillouin scattering (SBS) while maintaining good beam quality. As a result, a record output power of 379 W single frequency, linearly polarized, nearly single-mode fiber amplifier operating at 1030 nm is demonstrated. The polarization extinction ratio is as high as 16.3 dB, and the M2 is measured to be 1.12. Further, the dependence of the thermal-induced mode instability (TMI) threshold on the polarization state of an input signal laser is investigated for the first time. By changing the polarization state of the injected seed laser, the output power can increase to 550 W while the beam quality can be maintained well (M2=1.47). The slope efficiency of the whole amplifier is about 80%. No sign of SBS appears even at the highest output power and the further brightness scaling of both situations is limited by the TMI effect. To the best of our knowledge, this result is the highest output power of all-fiberized single frequency fiber amplifiers.

45 citations

Patent
29 Mar 2006
TL;DR: In this paper, a distributed fiber optic sensor simultaneously interrogates the sensing fiber with two counter propagating light beams, one beam is set to a constant frequency and the second beam is modified to contain a "comb" of frequencies, with each frequency component in the comb offset by a predetermined amount.
Abstract: A distributed fiber optic sensor simultaneously interrogates the sensing fiber with two counter propagating light beams. One beam is set to a constant frequency. The second beam is modified to contain a “comb” of frequencies, with each frequency component in the comb offset by a predetermined amount. Each of the frequency components in the comb, herein referred to as teeth, is able to interact with the counter-propagating beam through the Brillouin scattering process. With proper selection of the comb characteristics such as the number of teeth, the frequency spacing of teeth, the spectral width of teeth, and the relative amplitude of the teeth, a representation of the Brillouin spectrum at each point in the fiber can be obtained simultaneously with a single pass through the fiber.

45 citations

Journal ArticleDOI
TL;DR: A simple technical solution for precise adjustment of short fiber cavities commonly used with Brillouin fiber lasers based on recording the BrillouIn response of the cavity to the frequency scanned laser radiation is reported.
Abstract: We report a simple technical solution for precise adjustment of short fiber cavities commonly used with Brillouin fiber lasers. The technique is based on recording the Brillouin response of the cavity to the frequency scanned laser radiation. The recorded traces are used to calculate the excess cavity length that needs to be removed from the original cavity to provide its precise adjustment to the Brillouin resonance at any preselected pump laser wavelength. The adjusted laser cavity is simultaneously resonant for pump and Stokes radiation. For demonstration of the approach, fine adjustment of a 4 m long ring cavity based on standard Corning SMF-28 fiber is performed.

45 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
2023237
2022471
2021289
2020342
2019433
2018404