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About this Symposium
Meeting MS&T23: Materials Science & Technology
Symposium Solid-state Optical Materials and Luminescence Properties
Sponsorship ACerS Basic Science Division
Organizer(s) Yiquan Wu, Alfred University
Jas S. Sanghera, Naval Research Laboratory
Akio Ikesue, World-Lab. Co., Ltd
Rong-Jun Xie, Xiamen University
Mathieu Allix, Laboratoire CEMHTI
Kiyoshi Shimamura, National Institute for Materials Science
Liangbi Su, Shanghai Institute of Ceramics
Dariusz Hreniak, Polish Academy of Sciences
Scope Solid-state materials, including glass-ceramics, transparent polycrystalline and amorphous materials, and single-crystals, have a wide range of important and emerging applications in the fields of optoelectronics, optics, photonics, defense protection, telecommunication, bioengineering, healthcare and sustainable energy. The symposium is aimed at providing a forum for researchers, students, and entrepreneurs to present and discuss their recent scientific results and ideas on a wide variety of topics related to science, engineering and technology issues associated with solid-state optical materials and luminescence properties. The topics will be focused on the fundamental issues to help us advance our understanding and utilizations of advanced optical and photonic materials and related-devices applied to sustainable environment, healthcare, and energy.

Proposed Sessions:
1. Functionality of optical crystalline and amorphous materials
2. Fundamental science of optical transparent materials
3. Photonic and optical solid state materials
4. Novel optical materials design and mechanical properties
5. Advanced processing of optical materials and devices
6. Materials for scintillators and spectroscopy
7. Optoelectronic and magneto-optical materials
8. Crystalline and amorphous laser materials
9. Optical materials for bioengineering and sustainable energy
10. Ceramic and glass luminescence materials and applications
11. Optical and photonic fiber materials and applications
12. Ultra-violet and mid-infrared application of optical materials
13. Modeling and theory computation of optical materials
14. Optical and photonic materials for environment, healthcare and energy
15. Future advanced optical and photonic materials

Abstracts Due 05/08/2023

A New Family of Multinary Telluride Nanocrystals for Infrared Applications
Crystallography, Phase Stability and Luminescence Behavior of Eu-doped Ca4-xSrxLaO(BO3)3 Compounds
D-20: Fabrication and Optical Property Characterization of Silver Thin Film Using Magnetron Sputtering Method
Development of Non-cubic Fluorapatite Laser Ceramics
Fabrication and Optical Properties of Transparent Zinc Gallate Spinel Ceramics
Leveraging Material Microstructure and Linear/Non-linear Absorption for Pulsed Laser Welding of Ceramics
Overview of Optical Materials at NRL
Photoluminescent Behaviors of Mixed Metal Thiophosphates XScP2S6 (X=Ag, Cu) Above and Below Bandgap
Processing and Optical Properties of Noncubic RE-doped Ga2O3 Transparent Ceramics
Study of Garnet Scintillating Single Crystal Fiber Grown by Laser Heated Pedestal Growth Method
Study of Surface Effects in Yb3+ Doped Garnet Nanopowders for Understanding Grain Boundary Processes in Laser Ceramics: Fabrication and Spectroscopic Properties
Surface Morphology and Fracturing of Femtosecond Laser-irradiated Calcium Fluoride
Ultrafast Laser-induced Damage and Non-linear Optical Properties of Metal Thiophosphates
Ultraviolet Excitation of Trivalent Europium in Alumina

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