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NMR studies of magnetic properties in Heusler-type Mnn 3n Si

机译:赫斯勒型Mnn 3n Si中磁性的NMR研究

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摘要

In order to microscopically investigate the magnetic properties of both paramagnetic and antiferromagnetic phases in Mn3Si (T N = 23 K), the 55Mn NMR has been carried out at temperatures between 2.2 K and 300 K. The temperature dependences of the spectrum, Knight shift (or resonance frequency shift) and spin-lattice relaxation time T 1 of 55Mn NMR have been measured. In the paramagnetic phase, only one resonance spectrum can be obtained. The observed spectrum is identified to be a signal corresponding to the Mn(II) site. In the antiferromagnetic phase, two different spectra corresponding to the Mn(I) and Mn(II) sites are found at the resonance frequencies of 145 and 6 MHz, respectively, by the zero field NMR at 4.2 K. From these results, the internal magnetic fields on the 55Mn(I) and 55Mn(II) nuclei are found to be 13.6 and 0.6 T, respectively. According to the NMR results, the helical structure in incommensurate Mn spin states is better explained compared with the transverse sinusoidal structure.
机译:为了显微镜研究Mn3Si(TN = 23 K)中顺磁性和反铁磁性相的磁性,55Mn NMR已在2.2K和300K之间的温度下进行。光谱的温度依赖性,奈特位移(或测量了55Mn NMR的共振频率偏移和自旋晶格弛豫时间T 1。在顺磁相中,只能获得一个共振频谱。所观察到的光谱被识别为对应于Mn(II)位点的信号。在反铁磁相中,通过4.2K的零场NMR分别在145和6MHz的共振频率下发现了分别对应于Mn(I)和Mn(II)位点的两个不同的光谱。发现55Mn(I)和55Mn(II)核上的磁场分别为13.6和0.6T。根据NMR结果,与横向正弦形结构相比,可以更好地解释Mn自旋状态不对称的螺旋结构。

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