Long-lived, pulse-induced absorption in LiNb1−xTaxO3 solid solutions: the case of three intrinsic defect sites for electron localization with strong coupling (doi:10.26249/FK2/NBRSHM)

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Document Description

Citation

Title:

Long-lived, pulse-induced absorption in LiNb1−xTaxO3 solid solutions: the case of three intrinsic defect sites for electron localization with strong coupling

Identification Number:

doi:10.26249/FK2/NBRSHM

Distributor:

osnaData

Date of Distribution:

2024-04-09

Version:

1

Bibliographic Citation:

Dömer, Niklas; Koelmann, Julian; Hesselink, Mira; Hehemann, Tobias; Pfannstiel, Anton; Sauerwein, Felix; Vittadello, Laura; Ganschow, Steffen; Imlau, Mirco, 2024, "Long-lived, pulse-induced absorption in LiNb1−xTaxO3 solid solutions: the case of three intrinsic defect sites for electron localization with strong coupling", https://doi.org/10.26249/FK2/NBRSHM, osnaData, V1

Study Description

Citation

Title:

Long-lived, pulse-induced absorption in LiNb1−xTaxO3 solid solutions: the case of three intrinsic defect sites for electron localization with strong coupling

Identification Number:

doi:10.26249/FK2/NBRSHM

Authoring Entity:

Dömer, Niklas

Koelmann, Julian

Hesselink, Mira

Hehemann, Tobias

Pfannstiel, Anton

Sauerwein, Felix

Vittadello, Laura

Ganschow, Steffen

Imlau, Mirco

Distributor:

osnaData

Access Authority:

Imlau, Mirco

Depositor:

Pfannstiel, Anton

Date of Deposit:

2024-04-08

Study Scope

Keywords:

Physics

Abstract:

Femto-/nanosecond pulse-induced, red and near-infrared absorption is studied in LiNb<sub>1-x</sub>Ta<sub>x</sub>O<sub>3</sub> (LNT) solid solutions with the goal to probe the intrinsic defect structure via the formation, transport and recombination of optically generated small bound electron polarons with strong coupling to the lattice. As a result, long-lived transients are uncovered for LNT which exceed lifetimes of LN and LT by a factor of up to 100 over the entire range of investigated compositions. At the same time, the starting amplitude varies in the range of α<sub>li</sub><sup>0</sup> ≈ 10 − 100 m<sup>−1</sup> as a function of x and exceed the ones of LN and LT by a factor of up to ten. The results are interpreted in the model of three-dimensional small polaron hopping transport considering the simultaneous presence of three different types of small bound polarons, in particular of small electron Nb<sub> Li</sub><sup>4+</sup> and Ta<sub> Li</sub><sup>4+</sup> antisite polarons, and of small electron Ta<sub> V</sub><sup>4+</sup> interstitial polarons. We conclude that the differences between LNT, LN, and LT may point to model systems that consist of one (LN), two (LT) and three (LNT) intrinsic defect centers for electron localization.

Methodology and Processing

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Data Access

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CC0 Waiver

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absorption_edge_x_000.csv

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absorption_edge_x_006.csv

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absorption_edge_x_045.csv

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absorption_edge_x_070.csv

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absorption_edge_x_089.csv

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absorption_edge_x_100.csv

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band_gap_composition_dependence.csv

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c-LN.csv

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c-LT.csv

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initial_absorption_composition_dependence_633nm.csv

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initial_absorption_composition_dependence_785nm.csv

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initial_absorption_intensity_dependence_LN.csv

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initial_absorption_intensity_dependence_LNT05.csv

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initial_absorption_intensity_dependence_LT.csv

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lifetimes_composition_dependence.csv

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LNT-01_290K

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