Journal article
Design and Synthesis of the Beryllium-Free Deep-Ultraviolet Nonlinear Optical Material Ba-3(ZnB5O10)PO4
Advanced materials (Weinheim), v 27(45), p7380
02 Dec 2015
PMID: 26459262
Abstract
Access to the elusive deep-ultraviolet by direct second harmonic generation (SHG) enabled by a new beryllium-free zincoborate-phosphate crystal is reported. Ba-3(ZnB5O10)PO4, exhibits large SHG responses at 1064 and 532 nm and a short 180 nm absorption edge. Centimeter-size crystals are grown, and quantum mechanical calculations demonstrate the key role played by ZnO4 tetrahedra in the enhanced optical responses.
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Details
- Title
- Design and Synthesis of the Beryllium-Free Deep-Ultraviolet Nonlinear Optical Material Ba-3(ZnB5O10)PO4
- Creators
- Hongwei Yu - University of HoustonWeiguo Zhang - University of HoustonJoshua Young - Drexel UniversityJames M. Rondinelli - Northwestern UniversityP. Shiv Halasyamani - University of Houston
- Publication Details
- Advanced materials (Weinheim), v 27(45), p7380
- Publisher
- Wiley
- Number of pages
- 7
- Grant note
- E-1457 / Welch Foundation; The Welch Foundation 1454688 / Direct For Mathematical & Physical Scien; National Science Foundation (NSF); NSF - Directorate for Mathematical & Physical Sciences (MPS) DMR-1454688 / National Science Foundation; National Science Foundation (NSF) DMR-1503573 / NSF; National Science Foundation (NSF) DE-AC02-06CH11357 / U.S. DOE, Office of Basic Energy Sciences (BES); United States Department of Energy (DOE)
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- Materials Science and Engineering
- Web of Science ID
- WOS:000367833200016
- Scopus ID
- 2-s2.0-84949189882
- Other Identifier
- 991019330615804721
InCites Highlights
Data related to this publication, from InCites Benchmarking & Analytics tool:
- Collaboration types
- Domestic collaboration
- Web of Science research areas
- Chemistry, Multidisciplinary
- Chemistry, Physical
- Materials Science, Multidisciplinary
- Nanoscience & Nanotechnology
- Physics, Applied
- Physics, Condensed Matter