论文标题
H-ermno3吸光度,反射率和THZ的发射率从2 K到1700 K:载体筛选,Fröhlich共振,小极性和双层
h-ErMnO3 absorbance, reflectivity and, emissivity in the THz to mid-infrared from 2 K to 1700 K: carrier screening, Fröhlich resonance, small polarons, and bipolarons
论文作者
论文摘要
我们使用吸收,反射率和发射率技术从2 K到1700 k报告了六边形 - ermno3的温度依赖性THZ。在低温下,最低的频率振动模式与Paramagnon兴奋相交,与明确的晶体稀有晶体稀有晶体稀有的纯磁性重复相关。升高温度,许多振动带靠近空间群,预测将经历轮廓扩大和软化。特别是,在288-329 cm-1(300 K)范围内的一组独特的频段具有一个组件,其轮廓为载体筛选几乎完全模糊了〜830 K和〜1500 k的中间阶段。在TC〜830 K下方,此不对称频带在旋转声音相互作用和单位单元相互作用的三重态度上呈现出巧妙的平衡,并揭示出了一个不断的相互作用。环境拉曼散射引发了由于载体与纵向光学声子模式的宏观场之间的库仑相互作用而引起的Fröhlich共振的证据。我们发现它与六边形C轴负热膨胀是动态相关的。中红外(miR)光电性表明,在高温双极子中也起作用,在高温双极中介导。在较高的温度下,低频drude的贡献是由电子跳跃信号在〜1600 k处的iNSULATOR-METAL相变的信号触发的,而MiR响应在〜1600 K时表明单个小北极子和双极极性之间的共存。我们绘制与不正确的铁电的相似之处,维持晶格不相关的中间相和单位细胞的三倍。我们认为,在H-RMNO3(r =稀土,Y)化合物家族中,中间阶段被认为与tinc 〜1500 K处的发作不相关,而在TC〜830 k处的铁电锁定在H-ermno3中划定了这一策略。
We report the temperature dependent THz to mid-infrared response of hexagonal-ErMnO3 using absorption, reflectivity, and emissivity techniques from 2 K to 1700 K. At low temperatures, lowest frequency vibrational modes coexist with paramagnon excitations associated with well-defined crystal field Rare Earth pure magnetic replicas in an intriguing phonon-magnetic convergence. Increasing the temperature, a number of vibrational bands close to the space group predicted undergo profile broadening and softening. In particular, a distinctive set of bands in the 288-329 cm-1 (300 K) range has a component whose profile is carrier screened becoming nearly fully blurred in the intermediate phase between ~830 K and ~1500 K. Below TC ~830 K this asymmetric band further splits as spin phonon interaction and the tripling of the unit cell takes place revealing a delicate balance of long- and short-range interactions. Ambient Raman scattering brings up evidence of a Fröhlich resonance due to Coulomb interactions between carriers and the macroscopic field of the longitudinal optical phonon mode. We found it is dynamically correlated to the hexagonal c-axis negative thermal expansion. Mid-infrared (MIR) optical conductivity show that also plays a role in small polarons and mediates in high temperature bipolarones.At higher temperatures a low frequency Drude contribution is triggered by electron hopping signaling an insulator-metal phase transition at ~1600 K while the MIR response suggests coexistence between single small polarons and bipolarons. We draw a parallel with improper ferroelectrics sustaining a lattice incommensurate intermediate phase and unit cell tripling. We argue that in the h-RMnO3 (R=Rare Earth, Y) family of compounds the intermediate phase be considered incommensurate with onset at TINC ~1500 K and ferroelectric lock-in at TC ~830 K delimiting this regime in h-ErMnO3.