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Plasmon Soft Mode in an Organic-Inorganic Hybrid Perovskite

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arxiv 1904.07573 v1 pith:PAB57D6A submitted 2019-04-16 cond-mat.mtrl-sci

Plasmon Soft Mode in an Organic-Inorganic Hybrid Perovskite

classification cond-mat.mtrl-sci
keywords frequencyplasmonsoftdependenceinsulatorsmodephaseplasmons
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We report inelastic light scattering from underdamped plasmons in azetidinium lead bromide (AzPbBr3). The plasmons are very strongly temperature dependent and serve as a soft mode for the semiconductor-insulator phase transition near TC {\guillemotright} 150 K, demonstrating a continuous decrease in hole concentration np(T) by at least a factor of four and implying a nearly tricritical transition. The plasmon frequency and linewidth agree with independent measurements, and the impedance analysis reveals a frequency dependence (modelled by a constant phase element, CPE) that can be identified as due to electron-phonon coupling. The dependence of plasmon frequency upon (TC-T) is analogous to that for magnons in magnetic insulators or soft transverse optical phonons in ferroelectrics and ferroelastics, or for phasons in incommensurately modulated insulators.

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