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Origin of the Tetragonal-to-Orthorhombic Phase Transition in FeSe: A Combined Thermodynamic and NMR Study of Nematicity

机译:FeSe中四方相到正​​交相变的起源:向列相结合的热力学和NMR研究

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摘要

The nature of the tetragonal-to-orthorhombic structural transition at T[s]≈90  K in single crystalline FeSe is studied using shear-modulus, heat-capacity, magnetization, and nuclear magnetic resonance measurements. The transition is shown to be accompanied by a large shear-modulus softening, which is practically identical to that of underdoped Ba(Fe,Co)[2]A[s2], suggesting a very similar strength of the electron-lattice coupling. On the other hand, a spin-fluctuation contribution to the spin-lattice relaxation rate is only observed below T[s]. This indicates that the structural, or “nematic,” phase transition in FeSe is not driven by magnetic fluctuations.
机译:利用剪切模量,热容,磁化强度和核磁共振测量方法研究了单晶FeSe中T [s]≈90K处的四方晶向方晶结构的转变。过渡区伴随着大的剪切模量软化,实际上与未掺杂的Ba(Fe,Co)[2] A [s2]相同,表明电子-晶格耦合的强度非常相似。另一方面,仅在T [s]以下观察到自旋涨落对自旋晶格弛豫速率的贡献。这表明FeSe中的结构或“向列”相变不受磁波动的驱动。

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