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LaNdCrO中反常非谐声子动力学与交换偏置增强:稀土替代的作用

Anomalous anharmonic phonon dynamics and exchange bias enhancement in LaNdCrO: role of rare-earth substitution.

作者信息

Sutradhar Kousik, Pal D

机构信息

Department of Physics, Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.

出版信息

J Phys Condens Matter. 2025 Sep 17;37(38). doi: 10.1088/1361-648X/adfb19.

Abstract

This study explores the influence of Nd doping on the magnetic and vibrational properties of LaCrO, with a focus on exchange bias () behavior and the temperature-dependent evolution of Raman spectra. The doping introduces mixed valences, with the coexistence of Nd2+andNd3+as well as Cr3+ and Cr4+. Thephenomenon is observed in the doped samples and shows a significant increase with higher doping levels. The primary origin of this behavior is attributed to the Nd- O- Crsuper-exchange interaction. Additionally, the double-exchange interactions, arising from the presence of mixed-valence states, further enhance thiseffect. Raman spectroscopy reveals mode mixing in the low wavenumber region at intermediate Nd doping levels, which prevents a crossover of modes with the same symmetry. At low temperatures, the spin-phonon coupling is observed along with an anomalous anharmonic behavior, attributed to three-phonon and four-phonon processes contributing with opposite signs. A comparative study on cation substitution at different lattice sites, including the NdCrGaOsample, reveals that the observed anomaly likely originates from perturbations introduced at the rare-earth (A-site) position. The results suggest that the magnetic nature of rare-earth ions plays a dominant role in governing spin-phonon coupling, whereas transition-metal (B-site) ions have a comparatively minor influence.

摘要

本研究探讨了Nd掺杂对LaCrO磁性和振动特性的影响,重点关注交换偏置()行为以及拉曼光谱随温度的演变。掺杂引入了混合价态,其中Nd2+和Nd3+以及Cr3+和Cr4+共存。这种现象在掺杂样品中被观察到,并且随着掺杂水平的提高而显著增加。这种行为的主要起源归因于Nd - O - Cr超交换相互作用。此外,由混合价态的存在引起的双交换相互作用进一步增强了这种效应。拉曼光谱揭示了在中等Nd掺杂水平下低波数区域的模式混合,这阻止了具有相同对称性的模式的交叉。在低温下,观察到自旋 - 声子耦合以及异常的非谐行为,这归因于三声子和四声子过程贡献的符号相反。对包括NdCrGaO样品在内的不同晶格位置的阳离子取代的比较研究表明,观察到的异常可能源于稀土(A位)位置引入的扰动。结果表明,稀土离子的磁性在控制自旋 - 声子耦合方面起主导作用,而过渡金属(B位)离子的影响相对较小。

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