Kuzmin Nikolay N, Klimin Sergey A, Mavrin Boris N, Boldyrev Kirill N, Chernyshev Vladimir A, Mill Boris V, Popova Marina N
Institute of Spectroscopy, Russian Academy of Sciences, 108840, Troitsk, Moscow, Russia.
Department of Basic and Applied Physics, Ural Federal University, 620002, Ekaterinburg, Russia.
Data Brief. 2019 Dec 16;28:104889. doi: 10.1016/j.dib.2019.104889. eCollection 2020 Feb.
In "Lattice dynamics and structure of the new langasites LnCrGeBeO (Ln = La, Pr, Nd): vibrational spectra and calculations" [1], experimental and calculated results on lattice dynamics of the recently discovered new compounds LaCrGeBeO, PrCrGeBeO, and NdCrGeBeO are reported. These compounds belong to the langasite series and constitute a new class of low-dimensional antiferromagnets. The data presented in this article includes IR diffuse transmission spectra of powder samples of LnCrGeBeO (Ln = La, Pr, Nd) registered at room temperature with a Bruker 125HR Fourier spectrometer, Raman spectra taken in the backscattering geometry (also at room temperature) with a triple monochromator using the line 514, 5 nm of an argon laser as an excitation, results of the DFT calculations with the B3LYP and PBE0 hybrid functionals on the optimized crystal structures, eigenfrequencies and eigenvectors of the normal vibrational modes. These data can be used to analyse electron-phonon interaction and multiferroic properties of the new langasites and to compare the lattice dynamics of different langasites. The dataset is available on mendeley data public repository at https://doi.org/10.17632/32grbb4p82.1.
在《新型硅酸镧系化合物LnCrGeBeO(Ln = La、Pr、Nd)的晶格动力学与结构:振动光谱及计算》[1]一文中,报道了关于最近发现的新型化合物LaCrGeBeO、PrCrGeBeO和NdCrGeBeO晶格动力学的实验和计算结果。这些化合物属于硅酸镧系,构成了一类新型的低维反铁磁体。本文所呈现的数据包括:使用布鲁克125HR傅里叶光谱仪在室温下记录的LnCrGeBeO(Ln = La、Pr、Nd)粉末样品的红外漫透射光谱;使用氩离子激光514.5 nm谱线作为激发源,通过三单色仪在背散射几何条件下(同样在室温下)采集的拉曼光谱;采用B3LYP和PBE0杂化泛函对优化后的晶体结构进行密度泛函理论(DFT)计算的结果,以及正常振动模式的本征频率和本征向量。这些数据可用于分析新型硅酸镧系化合物的电子 - 声子相互作用和多铁性特性,并比较不同硅酸镧系化合物的晶格动力学。该数据集可在门捷列夫数据公共存储库(https://doi.org/10.17632/32grbb4p82.1)获取。