Table of Contents
Dataset Papers in Physics
Volume 2013 (2013), Article ID 236421, 4 pages
http://dx.doi.org/10.1155/2013/236421
Dataset Paper

Judd-Ofelt Calculations for Nd3+-Doped Fluorozirconate-Based Glasses and Glass Ceramics

1Centre for Innovation Competence SiLi-nano, Martin Luther University of Halle-Wittenberg, Karl-Freiherr-von-Fritsch-Straße 3, 06120 Halle (Saale), Germany
2Fraunhofer Center for Silicon Photovoltaics CSP, Walter-Hülse-Straße 1, 06120 Halle (Saale), Germany
3Department of Electrical Engineering, South Westphalia University of Applied Sciences, Lübecker Ring 2, 59494 Soest, Germany

Received 12 September 2012; Accepted 8 October 2012

Academic Editors: F. Charra, P. Kluth, F. Song, and H. Yang

This dataset has been dedicated to the public domain using the CC0 waiver.

Dataset http://dx.doi.org/10.1155/2013/236421/dataset

Dataset

Dataset Item 1 (Table). Data of the radiative decay parameters in the FZ glass matrix.

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Dataset Item 2 (Table). Data of the radiative decay parameters in the untreated FCZ glass matrix.

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Dataset Item 3 (Table). Data of the radiative decay parameters in the FCZ glass matrix, thermally treated at 240°C. The average nanocrystal size was determined to be 12 nm [14].

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Dataset Item 4 (Table). Data of the radiative decay parameters in the FCZ glass matrix, thermally treated at 250°C. The average nanocrystal size was determined to be 14 nm [14].

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Dataset Item 5 (Table). Data of the radiative decay parameters in the FCZ glass matrix, thermally treated at 260°C. The average nanocrystal size was determined to be 25 nm [14].

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Dataset Item 6 (Table). Data of the radiative decay parameters in the FCZ glass matrix, thermally treated at 270°C. The average nanocrystal size was determined to be 42 nm [14].

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