Journal Article

·2014

Optical properties of iron-doped lithium niobate crystal depending on iron content and temperature

M. H. Yükselici YTU , D. Bulut YTU , Birsel Can Ömür YTU , Asuman Aşıkoğlu Bozkurt YTU , Ç. Allahverdi YTU

physica status solidi (b)

Abstract

The optical properties of LiNbO3 crystals doped with iron at mol% between 0.015 and 0.1 were studied by optical absorption and Raman spectroscopies. The long wavelength tail below the fundamental absorption band is modeled by Urbach exponent assumed to be due to the tunneling of charged carriers through potential energy barrier bent by micro-electric field. We presume that non-uniform local charge distribution creates micro-electric field. Temperature dependence of the Fe2+ absorption band is reported over the range from 100 to 250 K. The Fe2+ absorption band at around 2.58 eV is red shifted at a rate of 4 × 10−5 eV K−1 as the temperature increases. We conclude that Li deficiency increases with iron, which sit on Li sites.

Keywords

Lithium niobate Absorption (acoustics) Electric field Doping Lithium (medication) Materials science Absorption band Raman spectroscopy Analytical Chemistry (journal) Crystal (programming language) Atmospheric temperature range Quantum tunnelling Condensed matter physics Chemistry Optics Optoelectronics Physics

Subject Areas

Photorefractive and Nonlinear Optics ·Atomic and Molecular Physics, and Optics ·Physical Sciences
Photonic and Optical Devices ·Electrical and Electronic Engineering ·Physical Sciences
Solid State Laser Technologies ·Electrical and Electronic Engineering ·Physical Sciences

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