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23 November 2020

Correction: Saeed, S., et al. Enhancement of Photorefraction in Vanadium-Doped Lithium Niobate through Iron and Zirconium Co-Doping. Materials 2019, Vol. 12, 3143

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1
The MOE Key Laboratory of Weak-Light Nonlinear Photonics, School of Physics and TEDA Institute of Applied Physics, Nankai University, Tianjin 300071, China
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Faculty of Physics, Vienna University, A-1090 Vienna, Austria
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Department of Complex Matter, Jozef Stefan Institute, Jamova 39, SI-1000 Ljubljana, Slovenia
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Authors to whom correspondence should be addressed.
The authors wish to make the following corrections to this paper [1]. Due to mislabeling, replace:
Table 1. Composition ratio of various iron, zirconium, and vanadium co-doped LN crystals.
Table 1. Composition ratio of various iron, zirconium, and vanadium co-doped LN crystals.
Sample SymbolFe (wt.%)Zr (mol%)V (mol%)
LN:V, Zr2.0 (LN1) 2.00.1
LN:V, Zr3.0 (LN2) 3.00.1
LN:V, Zr4.0 (LN3) 4.00.1
LN:V, Zr2.0, Fe (LN4)0.032.00.1
LN:V, Zr3.0, Fe (LN5)0.033.00.1
LN:V, Zr4.0, Fe (LN6)0.034.00.1
LN:V, Fe (LN7)0.03 0.1
with:
Table 1. Composition ratio of various iron, zirconium, and vanadium co-doped LN crystals.
Table 1. Composition ratio of various iron, zirconium, and vanadium co-doped LN crystals.
Sample SymbolFe (wt.%)Zr (mol%)V (mol%)
LN:V,Zr2.0,Fe (LN1)0.032.00.1
LN:V,Zr3.0,Fe (LN2)0.033.00.1
LN:V,Zr4.0,Fe (LN3)0.034.00.1
LN:V,Zr2.0 (LN4) 2.00.1
LN:V,Zr3.0 (LN5) 3.00.1
LN:V,Zr4.0 (LN6) 4.00.1
LN:V,Fe (LN7)0.03 0.1
LN:V (LN8) 0.1
The authors would like to apologize for any inconvenience caused to the readers by these changes.

Reference

  1. Saeed, S.; Liu, H.; Xue, L.; Zheng, D.; Liu, S.; Chen, S.; Kong, Y.; Rupp, R.; Xu, J. Enhancement of Photorefraction in Vanadium-Doped Lithium Niobate through Iron and Zirconium Co-Doping. Materials 2019, 12, 3143. [Google Scholar] [CrossRef] [PubMed]
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