Excited state absorption and laser potential of Mn5+-doped Li3PO4
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference19 articles.
1. Laser action in chromium‐activated forsterite for near‐infrared excitation: Is Cr4+the lasing ion?
2. Chromium‐doped forsterite laser pumped with 1.06 μm radiation
3. Cr4+ and Mn5+ active centers for new solid state laser materials
4. Optical spectroscopy ofCr4+-dopedCa2GeO4andMg2SiO4
5. Luminescence properties of Mn5+ in a variety of host lattices: Effects of chemical and structural variation
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1. Mn5+-activated Ca6Ba(PO4)4O near-infrared phosphor and its application in luminescence thermometry;Light: Science & Applications;2022-09-22
2. Energy Level Diagram of 3d2Configuration in Tetrahedral Crystal Field and Its Applications to Cr4 +/Mn5 +‐Doped Luminescent Materials;Advanced Theory and Simulations;2022-08-04
3. Structural variation and near infrared luminescence in Mn5+-doped M2SiO4 (M = Ba, Sr, ca) phosphors by cation substitution;Journal of Materials Science: Materials in Electronics;2018-02-05
4. A general strategy for controllable synthesis of Ba3(MO4)2:Mn5+ (M = V, P) nanoparticles;RSC Advances;2017
5. Effect of Li 4 P 2 O 7 and Li 2 Cu 2 P 6 O 18 minor phases on the luminescent properties of Cu + doped Li 3 PO 4;Journal of Luminescence;2014-12
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