Superconductivity at Pd/BiSe Interfaces Due to Self-Formed PdBiSe Interlayers
arXiv:2412.00701 · doi:10.3390/ma17225460
Abstract
Understanding the physical and chemical processes at the interface of metals and topological insulators is crucial for developing the next generation of topological quantum devices. Here we report the discovery of robust superconductivity in Pd/BiSe bilayers fabricated by sputtering Pd on the surface of BiSe. Through transmission electron microscopy measurements, we identify that the observed interfacial superconductivity originates from the diffusion of Pd into BiSe. In the diffusion region, Pd chemically reacts with BiSe and forms a layer of PdBiSe, a known su-perconductor with a bulk transition temperature of 1.5 K. Our work provides a method for in-troducing superconductivity into BiSe, laying the foundation for developing sophisticated BiSe-based topological devices.