Max Planck Institute for Solid State Research, Heisenbergstrasse 1, Stuttgart 70569, Germany.
Center for Microscopy and Analysis, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, PR China.
ACS Nano. 2023 Jun 27;17(12):11521-11526. doi: 10.1021/acsnano.3c01422. Epub 2023 Jun 1.
We present a study on the properties of superlattices made of ultrathin SrCuO layers sandwiched between LaCuO layers beyond the antiferromagnetic insulating nature of the individual layers of choice. Using molecular beam epitaxy, we synthesized these superlattices and observed superconductivity and metallicity at the interfaces. We probed the hole distribution to determine the discernible quantum states and found that the high-quality epitaxy, combined with mapping the electronic fine structure by electron energy-loss spectroscopy, allowed for the differentiation of insulating, metallic, and superconducting layers at the atomic-column scale. Our results demonstrate the possibility of exploring specific electronic properties at the subnanometer scale and highlight the potential of utilizing metastable SrCuO slabs.
我们研究了由超薄 SrCuO 层夹在 LaCuO 层之间构成的超晶格的性质,这些 SrCuO 层和 LaCuO 层的性质超出了各自选择的层的反铁磁绝缘性质。我们使用分子束外延法合成了这些超晶格,并在界面处观察到了超导性和金属性。我们探测了空穴分布,以确定可分辨的量子态,并发现高质量的外延,结合电子能量损失谱对电子精细结构的映射,使得可以在原子列尺度上区分绝缘、金属和超导层。我们的结果表明了在亚纳米尺度探索特定电子性质的可能性,并强调了利用亚稳态 SrCuO 薄片的潜力。