Tunable Nonlinear Absorption and Optical Limiting Behavior of Nabi(mo<sub>x</Sub>w<sub>1-x< Single Crystals With Ratio of Molybdenum/Tungsten
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Date
2023
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Journal ISSN
Volume Title
Publisher
Iop Publishing Ltd
Open Access Color
HYBRID
Green Open Access
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Publicly Funded
No
Abstract
The compositional effect of Mo/W ratio on linear, nonlinear absorption and optical limiting behavior of the NaBi(MoxW1-xO4)(2) single crystals grown by Czochralski technique was investigated. X-ray diffraction patterns of the studied crystals presented well-defined peaks associated with the tetragonal crystalline structure. The nonlinear absorption performance and optical limiting threshold were determined using an open-aperture Z-scan technique. A theoretical model including one photon absorption (OPA), two photon absorption (TPA) and free carrier absorption was used to determine the nonlinear absorption parameters. All of the results showed that defect states, which strongly affect nonlinear absorption (NA) and optical limiting behaviors, can be tuned with the Mo/W ratio, enabling NaBi(MoxW1-xO4)(2) single crystals to be used in desired optoelectronic applications. Linear optical absorption analysis revealed that bandgap energy and defect states can be tuned by changing the Mo/W ratio in the crystal structure. The obtained results showed that all the studied crystals had NA behavior and the nonlinear absorption coefficient decreased with increasing Mo/W ratio. Sequential TPA is the main NA mechanism for these crystals due to the fact that the incident light energy is lower than the bandgap energies and the existence of the real intermediate state around 2.32 eV.
Description
Gasanly, Nizami/0000-0002-3199-6686; KARATAY, Ahmet/0000-0001-9373-801X; Pepe, Yasemin/0000-0002-5384-2039
Keywords
NaBi(MoxW(1-x)O(4))(2) single crystals, open aperture Z-scan technique, nonlinear absorption, defect states, optical limiting
Turkish CoHE Thesis Center URL
Fields of Science
02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences
Citation
WoS Q
Q2
Scopus Q
Q3

OpenCitations Citation Count
3
Source
Physica Scripta
Volume
98
Issue
7
Start Page
075922
End Page
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Scopus : 6
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6
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4
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