Minbo Wu
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View article: Rational design of chemically complex laser glasses via neighboring glassy compounds model
Rational design of chemically complex laser glasses via neighboring glassy compounds model Open
The intricate amorphous structure and elusive local environment of rare-earth (RE) doped laser glasses render existing physical or machine-learning models inadequate for guiding the design of next-generation laser glasses, thereby maintain…
View article: Accelerated design of Tm3+-doped multicomponent germanate laser glasses via neighboring glassy compounds model
Accelerated design of Tm3+-doped multicomponent germanate laser glasses via neighboring glassy compounds model Open
Tm3+-doped germanate glasses are crucial for advancing 2 μm band fiber laser technologies; however, challenges remain in designing novel laser glasses, leaving experimental trial-and-error as main approach. This study presents an innovativ…
View article: Efficient and Broadband Emission in Dy3+-Doped Glass-Ceramic Fibers for Tunable Yellow Fiber Laser
Efficient and Broadband Emission in Dy3+-Doped Glass-Ceramic Fibers for Tunable Yellow Fiber Laser Open
Yellow lasers are of great interest in biology, medicine and display technology. However, nonlinear emission of near-infrared lasers at yellow still presents particularly complex optical alignment to date. Here, to the best of our knowledg…
View article: Azimuthally and radially polarized orbital angular momentum modes in valley topological photonic crystal fiber
Azimuthally and radially polarized orbital angular momentum modes in valley topological photonic crystal fiber Open
Artificially tailoring the polarization and phase of light offers new applications in optical communication, optical tweezers, and laser processing. Valley topological physics provides a novel paradigm for controlling electromagnetic waves…