论文标题

在铁基超导体中,双层分裂和层间配对的光谱证据

Spectroscopic Evidence of Bilayer Splitting and Interlayer Pairing in an Iron Based Superconductor

论文作者

Wu, Dingsong, Hong, Wenshan, Dong, Chenxiao, Wu, Xianxin, Sui, Qiangtao, Huang, Jianwei, Gao, Qiang, Li, Cong, Song, Chunyao, Luo, Hailan, Yin, Chaohui, Xu, Yu, Luo, Xiangyu, Cai, Yongqing, Jia, Junjie, Wang, Qingyan, Huang, Yuan, Liu, Guodong, Zhang, Shenjin, Zhang, Fengfeng, Yang, Feng, Wang, Zhimin, Peng, Qinjun, Xu, Zuyan, Qiu, Xianggang, Li, Shiliang, Luo, Huiqian, Hu, Jiangping, Zhao, Lin, Zhou, X. J.

论文摘要

在高温库酸盐超导体中,Cuo $ _2 $飞机之间的层间耦合在决定超导性方面起着重要作用,如临界温度(t $ _C $)对CUO $ _2 $平面在一个结构单元中的敏感依赖性所表明的那样。在Bi $ _2 $ _2 $ sr $ _2 $ cacu $ _2 $ o $ _ {8+δ} $超导体,带有两个Cuo $ _2 $飞机在一个结构单位中,两个Cuo $ _2 $平面之间的相互作用会增加到两种效率的表面表面(BiLayer explace),使得散布到两个Fermi Surface shebtles sheblows explate)。铁的超导体由养老院/fESE层的堆叠组成。层间耦合是否会导致类似的束带分裂,其对超导性的影响尚不清楚。在这里,我们报告了基于高分辨率激光的高分辨率光发射光谱(ARPES)在新发现的基于铁的超导体的测量值,KCA $ _2 $ _2 $ _2 $ _4 $ as $ _4 $ _4 $ f $ _2 $(t $ _c $ _c $ = 33.5 \,K),由两种富裕的fiteas bloces组成ca $ _2 $ f $ _2 $块。首次观察到双层分裂效果,该效果完全产生了Brilliouin区域中心周围的完全五个孔状的费米表面表。频带结构计算通过识别一个纤灵块中两个提装层之间的层间相互作用来重现观察到的双层分裂。区域中心周围的所有类似孔状的口袋都表现出费米表面依赖性和无节状的超导间隙。提出了具有短距离反铁磁波动的间隙函数,当考虑层间配对时,可以很好地理解间隙对称性。对于其中一条频段,观察到了特别强大的层间配对。我们的观察结果提供了有关层间耦合和层间配对的关键信息,以了解基于铁的超导体的超导性。

In high temperature cuprate superconductors, the interlayer coupling between the CuO$_2$ planes plays an important role in dictating superconductivity, as indicated by the sensitive dependence of the critical temperature (T$_C$) on the number of CuO$_2$ planes in one structural unit. In Bi$_2$Sr$_2$CaCu$_2$O$_{8+δ}$ superconductor with two CuO$_2$ planes in one structural unit, the interaction between the two CuO$_2$ planes gives rise to band splitting into two Fermi surface sheets (bilayer splitting) that have distinct superconducting gap. The iron based superconductors are composed of stacking of the FeAs/FeSe layers; whether the interlayer coupling can cause similar band splitting and its effect on superconductivity remain unclear. Here we report high resolution laser-based angle-resolved photoemission spectroscopy (ARPES) measurements on a newly discovered iron based superconductor, KCa$_2$Fe$_4$As$_4$F$_2$ (T$_C$=33.5\,K) which consists of stacking FeAs blocks with two FeAs layers separated by insulating Ca$_2$F$_2$ blocks. Bilayer splitting effect is observed for the first time that gives rise to totally five hole-like Fermi surface sheets around the Brilliouin zone center. Band structure calculations reproduce the observed bilayer splitting by identifying interlayer interorbital interaction between the two FeAs layers within one FeAs block. All the hole-like pockets around the zone center exhibit Fermi surface-dependent and nodeless superconducting gap. The gap functions with short-range antiferromagetic fluctuations are proposed and the gap symmetry can be well understood when the interlayer pairing is considered. The particularly strong interlayer pairing is observed for one of the bands. Our observations provide key information on the interlayer coupling and interlayer pairing in understanding superconductivity in iron based superconductors.

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