Szczegóły publikacji
Opis bibliograficzny
Multiring optical fibers doped with $Tm^{3+}$ and $Ho^{3+}$ for broadband profiled emission near $2\mu$m / Piotr Miluski, Marcin Kochanowicz, Marek ŁODZIŃSKI, Wojciech A. Pisarski, Joanna Pisarska, Marta Kuwik, Jacek Żmojda, Dominik DOROSZ, Jan Dorosz // W: Eighth international Workshop on Specialty Optical Fibers and their applications (WSOF 2025] : 7–10 April 2025, Prague, Czech Republic / eds. Pavel Peterka, [et al.] ; Institute of Photonics and Electronics of the Czech Academy of Sciences. — Washington, USA : SPIE, cop. 2025. — ( Proceedings of SPIE / The International Society for Optical Engineering ; ISSN 0277-786X ; vol. 13522 ). — ISBN: 978-15-1068-840-7; e-ISBN: 978-15-1068-84-1. — S. 1352215-1-1352215-4. — Bibliogr. s. 1352215-4, Abstr.
Autorzy (9)
- Miluski Piotr
- Kochanowicz Marcin
- AGHŁodziński Marek
- Pisarski Wojciech A.
- Pisarska Joanna
- Kuwik Marta
- Żmojda Jacek
- AGHDorosz Dominik Jacek
- Dorosz Jan
Słowa kluczowe
Dane bibliometryczne
| ID BaDAP | 162440 |
|---|---|
| Data dodania do BaDAP | 2025-09-15 |
| DOI | 10.1117/12.3058793 |
| Rok publikacji | 2025 |
| Typ publikacji | materiały konferencyjne (aut.) |
| Otwarty dostęp | |
| Wydawca | SPIE - The International Society for Optics and Photonics |
| Czasopismo/seria | Proceedings of SPIE / The International Society for Optical Engineering |
Abstract
A silica Large Mode Area double-clad optical fiber, fabrication and characterization is presented. The multiring doping profile with Tm3+ and Ho3+ ions with an undoped silica structure was used to obtain the emission of eye-safe wavelengths ranging from 1710 to 2100nm. EPMA analysis confirmed maximum Tm2O3 and Ho2O3 complex weight concentrations of 0.46% and 0.53%, respectively. The luminescence profile is investigated across fiber lengths ranging from 2 to 6m, revealing a decrease in full width at half maximum (FWHM) from 423nm to 367nm. The fiber design is optimized for single-mode operation near 2μm, making it highly suitable for a range of applications in photonics devices.