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Ferroelectric Phase Transitions in Three-Component Short-Period Superlattices Studied by Ultraviolet Raman Spectroscopy

机译:紫外拉曼光谱研究三组分短周期超晶格中的铁电相变

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摘要

Vibrational spectra of three-component BaTiO3SrTiO3CaTiO3 short-period superlattices grown by pulsed laser deposition with atomic-layer control have been investigated by ultraviolet Raman spectroscopy. Monitoring the intensity of the first-order phonon peaks in Raman spectra as a function of temperature allowed determination of the ferroelectric phase transition temperature, Tc. Raman spectra indicate that all superlattices remain in the tetragonal ferroelectric phase with out-of-plane polarization in the entire temperature range below Tc. The dependence of Tc on the relative thicknesses of ferroelectric (BaTiO3) to non-ferroelectric materials (SrTiO3 and CaTiO3) has been studied. The highest Tc was found in superlattices having the largest relative amount of BaTiO3, provided that the superlattice maintains its coherency with the substrate. Strain relaxation leads to a significant decrease in the ferroelectric phase transition temperature.
机译:通过紫外拉曼光谱研究了三组分BaTiO3SrTiO3CaTiO3短周期超晶格的振动光谱,该超晶格是通过脉冲激光沉积和原子层控制而生长的。监测拉曼光谱中一阶声子峰的强度随温度的变化,可以确定铁电相变温度Tc。拉曼光谱表明,所有超晶格在低于Tc的整个温度范围内都保留在四方铁电相中,且具有面外极化。研究了Tc对铁电体(BaTiO3)与非铁电体材料(SrTiO3和CaTiO3)相对厚度的依赖性。只要超晶格保持与基材的连贯性,在具有最大相对含量的BaTiO3的超晶格中发现最高Tc。应变松弛导致铁电相变温度显着降低。

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