论文标题
超导率引起的横向等离子模式和$ c $轴响应的横向等离子体模式和声子异常,双层复合rbca $ _2 $ _2 $ fe $ _4 $ as $ _4 $ f $ _2 $
Superconductivity-induced transverse plasma mode and phonon anomaly in the $c$-axis response of the bilayer compound RbCa$_2$Fe$_4$As$_4$F$_2$
论文作者
论文摘要
使用红外光谱验证,我们研究了平面外($ c $轴)对铁砷氧化铁超导体ACA $ _2 $ _2美元BI $ _2 $ SR $ _2 $ CACU $ _2 $ O $ _8 $(BI2212)。与丘比特类似,我们观察到超导性诱导的横向等离子体模式(TPM)和声子异常,它们都是局部电场效应的特征,这是由于局部电导率在内部和双层间区域的局部导电率之间的巨大差异而产生的。我们使用为丘比特开发的多层模型,我们获得了$ c $轴响应的良好描述,并在$ t \ simeq t_c t_c $ of $σ_1^{\ mathrm {bl}}}(ω\ rightarrow 0)\ simeq $ 1 \,000 $ω^{ - 1} \ MATHRM {cm}^{ - 1} $和$σ_1^{\ Mathrm {int}}}}(ω\ rightArrow 0)\ simeq $ 15 $ 15 $ω^{ - 1} - 1} - 1} \ mathrm {cm {cm {cm}^cm {cm}^{ - 1} $,以前是该YSENS,是相似的。与铜矿不同,我们没有发现正常状态伪gap的证据,因为部分抑制低能电子状态,该状态已经超过$ t_c $。也没有明确的迹象表明,前体超导配对相关性远高于$ t_c \ simeq $ 30〜k。这强调了伪甘蓝和前体超导配对在$ t_c $以上是库酸酯的独特功能,它们与它们的强电子相关性,不仅是由于分层晶体结构而产生的强烈各向异性电子响应的结果。
With infrared spectroscopy we studied the out-of-plane ($c$-axis) response of the iron arsenide superconductor ACa$_2$Fe$_4$As$_4$F$_2$ (A = Rb,Cs) which has a bilayer structure similar to the high $T_c$ cuprates YBa$_2$Cu$_3$O$_7$ (YBCO) and Bi$_2$Sr$_2$CaCu$_2$O$_8$ (Bi2212). In analogy to the cuprates, we observe a superconductivity-induced transverse plasma mode (tPM) and a phonon anomaly that are both signatures of local electric field effects that arise from a large difference between the local conductivities in the intra- and inter-bilayer regions. Using a multilayer model developed for the cuprates, we obtain a good description of the $c$-axis response and derive the local conductivities at $T \simeq T_c$ of $σ_1^{\mathrm{bl}}(ω\rightarrow 0) \simeq$ 1\,000 $Ω^{-1}\mathrm{cm}^{-1}$ and $σ_1^{\mathrm{int}}(ω\rightarrow 0) \simeq$ 15 $Ω^{-1}\mathrm{cm}^{-1}$, respectively, that are similar to the ones previously found in underdoped YBCO. Different from the cuprates, we find no evidence of a normal state pseudogap in terms of a partial suppression of the low-energy electronic states that sets in already well above $T_c$. There is also no clear sign of an onset of precursor superconducting pairing correlations well above $T_c \simeq$ 30~K. This highlights that the pseudogap and the precursor superconducting pairing well above $T_c$ are unique features of the cuprates with their strong electronic correlations and, for example, not just the result of a strongly anisotropic electronic response due to the layered crystal structure.