H Weng, W Wang, Z Chen, Z Bowen, F Li - Photonics, 2024 - search.proquest.com
Abstract Indoor Optical Wireless Communication (OWC) provides a promising solution for high-capacity, low-latency, and electromagnetic interference-resistant wireless …
O Terra - Measurement Science and Technology, 2019 - iopscience.iop.org
In this paper, a novel method is presented for the measurement of the thermo-optic coefficient (TOC)(dn/dT) of the single-mode fibers using optoelectronic oscillation (OEO) …
N Zhang, W Yi, Z Zheng, N Cui, R Guo, L Qiu… - Optics …, 2019 - Elsevier
In this paper, instead of adopting different algorithms to deal with the different impairments separately based on different signal processing structures, we proposed a joint linear …
X He, L Jiang, J Sun, A Yi, C Fu, Q Hu, W Pan… - Optics Express, 2024 - opg.optica.org
We experimentally demonstrate a total net-rate of 27.88 Tb/s for C-band wavelength-division multiplexing (WDM) transmission over an ultralong span-length of 150? km. It is the largest …
L Jiang, X Xiao, X He, Y Yu, A Yi, H Li… - 2023 Asia …, 2023 - ieeexplore.ieee.org
We report a cost-effective and high-capacity single mode transoceanic transmission system. It is the first time that the silicon-based integrated transponder and the long span length …
D Junjie, W Chen, J Zhou, Z Bowen, S Bohan, L Bo… - researching.cn
We experimentally demonstrate an 80-channel wavelength division multiplexing (WDM) transmission system over a 400 km fiber link. Raman amplification results in a non-flat WDM …
The thermal modeling for 1.55 μm InGaN based quantum-well heterostructure lasers is presented. The power conversion efficiency, output light power, and their temperature …
In this paper, we investigate the bandgap energy, lattice constants, optical confinement factor, and physical properties of InGaN based quantum well lasers for 1.55 µm applications …