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Phase transitions in BaTiO3 thin films and BaTiO3/BaZrO3 superlattices

机译:BaTiO 3 薄膜和BaTiO 3 / BaZrO 3 超晶格的相变

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摘要

Using pulsed laser deposition, we grew a ferroelectric [BaTiO]/[BaZrO] (BT/BZ) superlattice with a stacking periodicity of Λ = 256 Å and a BT single film on a LaSrCoO-buffered (001)MgO substrate, and then studied the phase transitions of these materials. At room temperature, the polarized Raman spectra of the BT film corresponded to a ferroelectric orthorhombic phase with the polar axis oriented in the plane of the substrate. A ferroelectric-paraelectric phase transition in the BT film occurred at ∼450 K. Upon cooling to ∼300 K, a phase transition to the monoclinic phase occurred. These experimental results agree well with a theoretical “temperature-misfit strain” phase diagram of the BT film. We found no evidence of phase transitions in the BT/BZ superlattice below room temperature. The phase transition to the paraelectric phase in the BT/BZ superlattice increased in temperature because of lattice mismatch between the BT and BZ layers. A desirable Curie temperature can be tailored rather precisely by varying the layer thicknesses or the BT/BZ ratio in the superlattice. The BT/BZ superlattices are very good for device applications because their ferroelectric phase with in-plane polarization can remain stable at least from 0 K up to 723 K, and even at higher temperatures in superlattices with smaller periodicities.
机译:使用脉冲激光沉积,我们在LaSrCoO缓冲(001)MgO衬底上生长了铁电[BaTiO] / [BaZrO](BT / BZ)超晶格,其堆叠周期为= 256Å和BT单层膜,然后进行了研究这些材料的相变。在室温下,BT膜的极化拉曼光谱对应于铁电正交晶相,其极性轴位于基材平面内。 BT膜中的铁电-顺电相变在〜450 K处发生,冷却至〜300 K时,发生向单斜相的相变。这些实验结果与BT膜的理论“温度失配应变”相图非常吻合。我们没有发现低于室温的BT / BZ超晶格中有相变的迹象。由于BT和BZ层之间的晶格失配,BT / BZ超晶格中顺电相的相变温度升高。通过改变超晶格中的层厚度或BT / BZ比,可以相当精确地调整所需的居里温度。 BT / BZ超晶格非常适合设备应用,因为它们具有平面内极化的铁电相至少在0 K至723 K范围内都可以保持稳定,甚至在较高温度下具有较小周期性的超晶格中也是如此。

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