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束缚于钽酸锂晶体间隙钽缺陷的小极化子

Small electron polarons bound to interstitial tantalum defects in lithium tantalate.

作者信息

Pfannstiel Anton, Hehemann Tobias, Schäfer Nils A, Sanna Simone, Suhak Yuriy, Vittadello Laura, Sauerwein Felix, Dömer Niklas, Koelmann Julian, Fritze Holger, Imlau Mirco

机构信息

Institut für Physik, Fachbereich Mathematik/Informatik/Physik, Universität Osnabrück, Barbarastraße 7, D-49076 Osnabrück, Germany.

Institut für Theoretische Physik and Center for Materials Research (ZfM/LaMa), Justus-Liebig-Universität Gießen, Heinrich-Buff-Ring 16, D-35392 Gießen, Germany.

出版信息

J Phys Condens Matter. 2024 Jun 4;36(35). doi: 10.1088/1361-648X/ad4d47.

DOI:10.1088/1361-648X/ad4d47
PMID:38759682
Abstract

The absorption features of optically generated, short-lived small bound electron polarons are inspected in congruent lithium tantalate, LiTaO(LT), in order to address the question whether it is possible to localize electrons at interstitial TaV:VLidefect pairs by strong, short-range electron-phonon coupling. Solid-state photoabsorption spectroscopy under light exposure and density functional theory are used for an experimental and theoretical access to the spectral features of small bound polaron states and to calculate the binding energies of the small bound TaLi4+(antisite) and TaV4+:VLi(interstitial site) electron polarons. As a result, two energetically well separated (ΔE≈0.5 eV) absorption features with a distinct dependence on the probe light polarization and peaking at 1.6 eV and 2.1 eV are discovered. We contrast our results to the interpretation of a single small bound TaLi4+electron state with strong anisotropy of the lattice distortion and discuss the optical generation of interstitial TaV4+:VLismall polarons in the framework of optical gating of TaV4+:TaTa4+bipolarons. We can conclude that the appearance of carrier localization at TaV:VLimust be considered as additional intermediate state for the 3D hopping transport mechanisms at room temperature in addition to TaLi, as well, and, thus, impacts a variety of optical, photoelectrical and electrical applications of LT in nonlinear photonics. Furthermore, it is envisaged that LT represents a promising model system for the further examination of the small-polaron based photogalvanic effect in polar oxides with the unique feature of two, energetically well separated small polaron states.

摘要

为了探究是否有可能通过强短程电子 - 声子耦合将电子定域在间隙TaV:VLidefect对处,我们对同成分钽酸锂LiTaO(LT)中光学产生的短寿命小束缚电子极化子的吸收特性进行了研究。利用光照下的固态光吸收光谱和密度泛函理论,从实验和理论上研究小束缚极化子态的光谱特征,并计算小束缚TaLi4 +(反位)和TaV4 +:VLi(间隙位)电子极化子的结合能。结果发现了两个能量上分离良好(ΔE≈0.5 eV)的吸收特征,它们对探测光偏振有明显依赖性,峰值分别在1.6 eV和2.1 eV。我们将结果与具有强烈晶格畸变各向异性的单个小束缚TaLi4 +电子态的解释进行对比,并在TaV4 +:TaTa4 +双极化子的光学门控框架内讨论间隙TaV4 +:VLismall极化子的光学生成。我们可以得出结论,除了TaLi之外,TaV:VL处载流子定域的出现也必须被视为室温下三维跳跃传输机制的额外中间态,因此会影响LT在非线性光子学中的各种光学、光电和电学应用。此外,可以设想,LT是一个有前途的模型系统,可用于进一步研究具有两个能量上分离良好的小极化子态这一独特特征的极性氧化物中基于小极化子的光电流效应。

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