首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electric field gradient wave (EFGW) in iron-based superconductor Ba_(0.6)K_(0.4)Fe_2As_2 studied by Mossbauer spectroscopy
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Electric field gradient wave (EFGW) in iron-based superconductor Ba_(0.6)K_(0.4)Fe_2As_2 studied by Mossbauer spectroscopy

机译:Mossbauer光谱研究铁基超导体Ba_(0.6)K_(0.4)Fe_2As_2中的电场梯度波(EFGW)

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摘要

The optimally doped '122' iron-based superconductor Ba_(0.6)K_(0.4)Fe_2As_2 has been studied by ~(57)Fe Mossbauer spectroscopy versus temperature ranging from 4.2 K till 300 K with particular attention paid to the superconducting transition around 38 K. The spectra do not contain magnetic components and they exhibit quasi-continuous distribution of quadrupole split doublets. A distribution follows the electric field gradient (EFG) spatial modulation (wave) - EFGW. The EFGW is accompanied by some charge density wave (CDW) having about an order of magnitude lesser influence on the spectrum. The EFGW could be modeled as widely separated narrow sheets with the EFG increasing from small till maximum value almost linearly and subsequently dropping back to the original value in a similar fashion - across the sheet. One encounters very small and almost constant EFG between sheets. The EFGW shape and amplitude as well as the amplitude of CDW are strongly affected by a superconducting transition. All modulations are damped significantly at transition (38 K) and recover at a temperature being about 14 K lower. The maximum quadrupole splitting at 4.2 K amounts to about 2.1 mm/s, while the dispersion of CDW seen on the iron nuclei could be estimated far away from the superconducting gap opening and at low temperature as 0.5 el./a.u.~3. It drops to about 0.3 el./a.u.~3 just below transition to the superconducting state.
机译:通过〜(57)Fe Mossbauer光谱研究了最佳掺杂的'122'铁基超导体Ba_(0.6)K_(0.4)Fe_2As_2与温度从4.2 K到300 K的关系,并特别注意了38 K附近的超导转变光谱不包含磁性成分,并且表现出四极分裂双峰的准连续分布。分布遵循电场梯度(EFG)空间调制(波)-EFGW。 EFGW伴随着一些电荷密度波(CDW),其对频谱的影响小了一个数量级。可以将EFGW建模为广泛分离的窄表,其中EFG几乎从线性增加到最大值,然后以相似的方式在整个表中降回到原始值。一张纸之间会遇到很小且几乎恒定的EFG。 EFGW的形状和幅度以及CDW的幅度受超导过渡的强烈影响。所有的调制都在过渡(38 K)时被显着衰减,并在大约低14 K的温度下恢复。在4.2 K时最大四极分裂大约为2.1 mm / s,而在铁核上看到的CDW的色散可以估计为远离超导间隙开口并且在低温下为0.5 el./a.u.~3。在过渡到超导状态以下,它下降到约0.3 el./a.u.~3。

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