论文标题

磁链和旋转偶联的签名磁电六角形15R-BAMNO3

Signatures of magnetostriction and spin-phonon coupling in magnetoelectric hexagonal 15R-BaMnO3

论文作者

Poojitha, Bommareddy, Rathore, Anjali, Kumar, Ankit, Saha, Surajit

论文摘要

旋转偶联,旋转与周围晶格的相互作用是了解多效应的基础物理和工程师的磁化动力学的关键参数。多效材料中的基本激发受到自旋 - 光子相互作用的强烈影响,使拉曼光谱学成为探测这些耦合的独特工具。最近,有人提出,通过自旋晶格耦合将15R型六边形BAMNO3的介电和磁性能相关。在这里,我们报告了在230 K,280 K和330 K处的15R-BAMNO3拉曼光谱的广泛重新归一化。拉曼光谱显示了在磁有序相中的新拉曼模式的外观。此外,另一个拉曼声子出现在〜280 K以下,这可能是由于MN-ION的位移而导致的局部晶格 - 渗透率引起的,而Mn-ions的位移随温度而表现出异常的移位。根据温度和磁场依赖性拉曼光谱,温度依赖性X射线衍射,磁化强度和特定的热量测量值,讨论了拉曼光谱中观察到的重新归一化和声子异常的起源。我们的结果表明,在15R-BAMNO3中存在磁链和自旋 - 偶联耦合,因此表明光子声子与其磁电特性密切相关。

Spin-phonon coupling, the interaction of spins with surrounding lattice is a key parameter to understand the underlying physics of multiferroics and engineer their magnetization dynamics. Elementary excitations in multiferroic materials are strongly influenced by spin-phonon interaction, making Raman spectroscopy a unique tool to probe these coupling(s). Recently, it has been suggested that the dielectric and magnetic properties of 15R-type hexagonal BaMnO3 are correlated through the spin-lattice coupling. Here, we report the observation of an extensive renormalization of the Raman spectrum of 15R-BaMnO3 at 230 K, 280 K, and 330 K. Magnetic measurements reveal the presence of a long-range and a short-range magnetic ordering in 15R-BaMnO3 at 230 K and 330 K, respectively. The Raman spectrum shows the appearance of new Raman modes in the magnetically ordered phases. Furthermore, an additional Raman phonon appears below ~ 280 K, possibly arising from a local lattice-distortion due to the displacement of Mn-ions, that exhibits anomalous shift with temperature. The origin of the observed renormalization and phonon anomalies in Raman spectra are discussed based on the evidences from temperature- and magnetic-field-dependent Raman spectra, temperature-dependent x-ray diffraction, magnetization, and specific heat measurements. Our results indicate the presence of magnetostriction and spin-phonon coupling in 15R-BaMnO3 thus suggesting that the optical phonons are strongly correlated to its magnetoelectric properties.

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