论文标题

由2.5 MeV电子辐照引起的受控点状疾病对孔掺杂(BA,K)Fe $ _2 $的列明电阻率各向异性的影响

Effect of controlled point-like disorder induced by 2.5 MeV electron irradiation on nematic resistivity anisotropy of hole-doped (Ba,K)Fe$_2$As$_2$

论文作者

Tanatar, M. A., Timmons, Erik I., Ko'nczykowski, M., Cavani, O., Cho, Kyuil, Liu, Yong, Lograsso, T. A., Prozorov, R.

论文摘要

在孔掺杂的ba $ _ {1-x} $ k $ _x $ _x $ fe $ _2 $的样品中研究了电阻率的平面各向异性。低温($ \ sim $ 20〜K)具有相对论2.5 MEV电子的辐照来控制样品的疾病和残留电阻率。辐照前后,对应力消除技术的修改实现了相同样品的测量,从而得出了主要无弹性散射过程的各向异性特征。我们的主要发现是,电阻率各向异性的符号是相同的,无论残留电阻率与剩余电阻率无关,并且在重点四方过渡上方的正交bombic $ c_2 $相中保持相同。各向异性$Δρ\equivρ_a(t)-ρ_b(t)$的异常$ t $ - 线性依赖性在原始样品中找到,$ x = $ x = $ 0.213和$ x = $ x = $ 0.219,在任何$ρ_A(t)$或$ρ_b(t)$或$ρ_b(t)$ρ_A(t)$ρ_a(t)$(t)$中没有类似的签名。我们表明,该特征可以通过R.〜M.〜Fernandes {\ it等} Phys的现象学模型来复制。莱特牧师。 {\ bf 107},217002(2011)。我们推测,在接近重点四方相的不稳定性时,列出顺序的波动开始有助于这种异常的依赖性。

In-plane anisotropy of electrical resistivity was studied in samples of the hole-doped Ba$_{1-x}$K$_x$Fe$_2$As$_2$ in the composition range $0.21 \leq x \leq 0.26$ where anisotropy changes sign. Low-temperature ($\sim$20~K) irradiation with relativistic 2.5 MeV electrons was used to control the level of disorder and residual resistivity of the samples. Modification of the stress-detwinning technique enabled measurements of the same samples before and after irradiation, leading to conclusion of anisotropic character of predominantly inelastic scattering processes. Our main finding is that the resistivity anisotropy is of the same sign irrespective of residual resistivity, and remains the same in the orthorhombic $C_2$ phase above the re-entrant tetragonal transition. Unusual $T$-linear dependence of the anisotropy $Δρ\equiv ρ_a(T)-ρ_b(T)$ is found in pristine samples with $x=$0.213 and $x=$0.219, without similar signatures in either $ρ_a(T)$ or $ρ_b(T)$. We show that this feature can be reproduced by a phenomenological model of R.~M.~Fernandes {\it et al.} Phys. Rev. Lett. {\bf 107},217002 (2011). We speculate that onset of fluctuations of nematic order on approaching the instability towards the re-entrant tetragonal phase contributes to this unusual dependence.

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