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https://repositorio.uca.edu.ar/handle/123456789/10989
Título: | All polarization-maintaining assively mode-locked yb-doped fiber laser : pulse compression using an anomalous polarization-maintaining photonic crystal fiber | Autor: | Cuadrado-Laborde, Christian Carrascosa, Antonio Diez, Antonio Cruz, José L. Andrés, Miguel V. |
Palabras clave: | FIBRA OPTICA; LÁSER; TELECOMUNICACIONES; INDUSTRIA DE LA COMUNICACION; TECNOLOGIA DE LA COMUNICACION | Fecha de publicación: | 2019 | Editorial: | Institute of Electrical and Electronics Engineers | Cita: | Cuadrado-Laborde, C. [et al.] All Polarization-Maintaining Passively Mode-Locked Yb-Doped Fiber Laser : Pulse Compression Using an Anomalous Polarization-Maintaining Photonic Crystal Fiber [en línea] IEEE Photonics Journal. 2019, 11 (6). doi: 10.1109 / JPHOT.2019.2943839 Disponible en: https://repositorio.uca.edu.ar/handle/123456789/10989 | Resumen: | Abstract: We report the generation of short pulses at 1 μm using an all-polarizationmaintaining (PM) fiber configuration. The pulses are provided by an all normal-dispersion Fabry-Perot Yb-doped cavity and are compressed with an anomalous polarizationmaintaining photonic crystal fiber (PM PCF). Opposed to standard configurations; here the filtering action is solely performed by the finite bandwidth of the gain medium. The laser generates 8 ps width sech2 profile pulses at 1046.8 nm with a −10 dB bandwidth of 5.9 nm. After compression using the PM PCF, pulses with an FWHM of 3 ps were obtained, limited by the actual value of the available anomalous dispersion. We also report the changes in the output light pulses when both the net-normal dispersion of the cavity and the medium gain length were varied. We found that the lack of a specific filter within the cavity does not deteriorate the performance as compared with previous works. | URI: | https://repositorio.uca.edu.ar/handle/123456789/10989 | ISSN: | 1943-0655 (on line) | Disciplina: | INGENIERIA | DOI: | 10.1109/JPHOT.2019.2943839 | Derechos: | Acceso abierto | Fuente: | IEEE Photonics Journal Nro. 11 (6) Año 2019 |
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