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Magnetic moment collapse induced axial alternative compressibility of Cr2TiAlC2 at 420 GPa from first principle

机译:从第一原理看磁矩塌陷在420 GPa下引起Cr2TiAlC2的轴向替代压缩性

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摘要

The electronic structure and thermodynamical properties of Cr2TiAlC2 are studied by first principles under pressure. The obtained results observed that the ferromagnetic order is the most stable ground state and the magnetic moment will collapse at about 50 GPa. As a result, the lattice a axis becomes stiffer above about 420 GPa, ultimately presenting the same axial compressibility trends with those of nonmagnetic compounds Mo2TiAlC2 and hypothetical Cr2TiAlC2. The elastic constants and phonon dispersion curves demonstrate the structural stability during the disappearance of magnetic moment and occurrence of axial alternative compressibility. The density of states and energy band calculations confirmed the existence of magnetic moment of Cr2TiAlC2 at 0 GPa and disappearance at high pressures above 50 GPa. Evolutions of magnetic moment collapse with pressure are confirmed by a variety of properties. The obtained grüneisen parameter and thermal expansion coefficients show the maximum value among the known MAX phases, to date and to the author’s knowledge.
机译:通过第一原理在压力下研究了Cr2TiAlC2的电子结构和热力学性质。获得的结果表明,铁磁序是最稳定的基态,磁矩将在大约50 GPa时崩溃。结果,晶格a轴在大约420 GPa以上变得更硬,最终呈现出与非磁性化合物Mo2TiAlC2和假定的Cr2TiAlC2相同的轴向可压缩性趋势。弹性常数和声子弥散曲线证明了在磁矩消失和轴向可压缩性发生时的结构稳定性。态密度和能带计算证实了Cr2TiAlC2在0 GPa处的磁矩的存在和在50 GPa以上的高压下的消失。磁矩崩溃随压力而变化的演变被多种特性所证实。到目前为止,据作者所知,获得的grüneisen参数和热膨胀系数显示出已知的MAX相中的最大值。

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