Single-frequency fiber amplifiers for next-generation gravitational wave detectors
M Steinke, H Tünnermann, V Kuhn… - IEEE Journal of …, 2017 - ieeexplore.ieee.org
At the beginning of 2016, the first direct detection of a gravitational wave by a laser-based
Michelson interferometer has been reported. So far, the number of confirmed detections has …
Michelson interferometer has been reported. So far, the number of confirmed detections has …
Demonstration of laser cooling in a novel all oxide gayy silica glass
We demonstrate laser induced cooling in ytterbium doped silica (SiO2) glass with alumina,
yttria co-doping (GAYY-Aluminum: Yttrium: Ytterbium Glass) fabricated using the modified …
yttria co-doping (GAYY-Aluminum: Yttrium: Ytterbium Glass) fabricated using the modified …
Fabrication of Yb-doped silica micro-structured optical fibers from UV-curable nano-composites and their application in temperature sensing
B Zheng, J Yang, F Qi, J Wang, X Zhang… - Journal of Non-Crystalline …, 2021 - Elsevier
A novel scheme for fabricating Yb-doped silica micro structured optical fibers and their
application in high-temperature optical fiber sensing are reported. The Yb-doped silica micro …
application in high-temperature optical fiber sensing are reported. The Yb-doped silica micro …
Silica optical fibers doped with nanoparticles for fiber lasers and broadband sources
We present a review on recent progress in the research and development of
nanoparticlecontaining optical fibers for high-power fiber lasers, amplifiers, and ASE …
nanoparticlecontaining optical fibers for high-power fiber lasers, amplifiers, and ASE …
MCVD in-situ solution doping process for the fabrication of complex design large core rare-earth doped fibers
AS Webb, AJ Boyland, RJ Standish, S Yoo… - Journal of Non …, 2010 - Elsevier
We report on the fabrication and characterization of rare-earth doped silica fibers
manufactured using an in-situ solution doping technique, which is compatible with …
manufactured using an in-situ solution doping technique, which is compatible with …
Anti-stokes cooling in highly ytterbium doped phase separated aluminium-yttrium oxide glass by 4 k
Silica glass is a strong candidate in the development of radiation balanced fiber lasers and
amplifiers due to its properties such as high stability, high mechanical robustness and …
amplifiers due to its properties such as high stability, high mechanical robustness and …
Formation and photoluminescence property of PbS quantum dots in silica optical fiber based on atomic layer deposition
The PbS Quantum Dots (QDs)-doped silica optical fiber is fabricated using atomic layer
deposition (ALD) technique in combination with modified chemical vapor deposition (MCVD) …
deposition (ALD) technique in combination with modified chemical vapor deposition (MCVD) …
Fabrication of alumina-doped optical fiber preforms by an MCVD-metal chelate doping method
KAM Sharif, NYM Omar, MI Zulkifli, SZM Yassin… - Applied Sciences, 2020 - mdpi.com
Featured Application Fabrication of rare-earth-doped fiber amplifiers and high-power fiber
lasers. Abstract This paper reports on the fabrication of alumina-doped preforms using a …
lasers. Abstract This paper reports on the fabrication of alumina-doped preforms using a …
Controlled phase-separation effect for enhanced optical refrigeration in yttrium-aluminosilicate glasses
Silica glass is one of the most commonly used photonic materials. Fabrication through vapor
deposition allows the large production of high-quality bulk and optical fibers, widely …
deposition allows the large production of high-quality bulk and optical fibers, widely …
Improved fluorescence and gain characteristics of Er-doped optical fiber with PbS nanomaterials co-doping
X Pan, Y Dong, J Wen, Y Shang, X Zhang, Y Huang… - Materials, 2022 - mdpi.com
Er-doped optical fiber (EDF) with ultra-broad gain bandwidth is urgently needed given the
rapid advancement of optical communication. However, the weak crystal field of the host …
rapid advancement of optical communication. However, the weak crystal field of the host …