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自发极化固体的光学吸收光谱:以一氧化二氮为例。

The optical absorption spectra of spontaneously electrical solids: the case of nitrous oxide.

机构信息

Department of Physics and Astronomy, Aarhus University, Ny Munkegade 120, DK-8000 Aarhus, Denmark.

出版信息

Phys Chem Chem Phys. 2019 Jan 17;21(3):1190-1197. doi: 10.1039/c8cp05746j.

Abstract

Absorption spectra of films of N2O, in the range 115-160 nm, are presented for deposition temperatures between 33 K and 64 K. Observed shifts in the absorption energy vs. deposition temperature are analysed in terms of the temperature-dependent spontaneously electrical ('spontelectric') fields present in the films. Using a simple electrostatic theory, we suggest that (i) spectra are associated with Wannier-Mott excitons, (ii) the action of the electric field upon the excitons suffers a blockade at ≤54 K for the C-state and ≤52 K for the D-state of N2O, (iii) the blockade may be attributed to structural defects, which trap excitons, limiting their size and (iv) films form with defect-free regions containing 324 ± 3, 168 ± 46 and 95 ± 1 molecules of N2O at 54 K, 52 K and 50 K respectively, yielding an experimental indication of the scale size of regular periodicity associated with Wannier-Mott excitons. Results demonstrate how the spontelectric effect can be used as a tool for exploring the structure of solids and give a graphic image of the structural changes that take place close to the known phase change at 47 K/48 K.

摘要

本文呈现了在 33 K 至 64 K 的沉积温度范围内,N2O 薄膜在 115-160nm 范围内的吸收光谱。通过分析随沉积温度变化的吸收能量的变化,我们研究了存在于薄膜中的温度依赖自发电(“spontelectric”)场。使用简单的静电理论,我们提出了以下几点:(i)光谱与 Wannier-Mott 激子有关,(ii)在 C 态下,电场所作用于激子的阻挡作用发生在≤54 K,在 D 态下≤52 K,(iii)阻挡作用可能归因于结构缺陷,这些缺陷会捕获激子,限制其大小,(iv)在 54 K、52 K 和 50 K 下,薄膜分别以无缺陷区域的形式形成,其中含有 324±3、168±46 和 95±1 个 N2O 分子,从而提供了与 Wannier-Mott 激子相关的规则周期性的尺度大小的实验指示。结果表明,spontelectric 效应如何可以用作探索固体结构的工具,并提供了在接近已知相变(47 K/48 K)时发生的结构变化的直观图像。

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