Nonlinear optical properties of TeO2 crystalline phases from first principles

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Abstract

We have computed second and third nonlinear optical susceptibilities of two crystalline bulk tellurium oxide polymorphs: α-TeO2 (the most stable crystalline bulk phase) and γ-TeO2 (the crystalline phase that ressembles the more to the glass phase). Third-order nonlinear susceptibilities of the crystalline phases are two orders of magnitude larger than α-SiO2 cristoballite, thus extending the experimental observations on glasses to the case of crystalline compounds. While the electronic lone pairs of Te contribute to those large values, a full explanation of the anisotropy of the third-order susceptibility tensor requires a detailed analysis of the structure, in particular, the presence of helical chains, that seems to be linked to cooperative nonlocal polarizabilty effects. © 2011 American Physical Society.

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Berkaïne, N., Orhan, E., Masson, O., Thomas, P., & Junquera, J. (2011). Nonlinear optical properties of TeO2 crystalline phases from first principles. Physical Review B - Condensed Matter and Materials Physics, 83(24). https://doi.org/10.1103/PhysRevB.83.245205

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