Topological superconductivity is a state of matter that can host Majorana modes, the building blocks of a topological quantum computer. Many experimental platforms predicted to show such a topological state rely on proximity-induced superconductivity. However, accessing the topological properties requires an induced hard superconducting gap, which is challenging to achieve for most material systems. We have systematically studied how the interface between an InSb semiconductor nanowire and a NbTiN superconductor affects the induced superconducting properties. Step by step, we improve the homogeneity of the interface while ensuring a barrier-free electrical contact to the superconductor and obtain a hard gap in the InSb nanowire. The magneti...
We study bottom-up grown semiconductor indium antimonide nanowires that are coated with shells of ti...
Semiconductor nanowires such as InAs and InSb are promising materials for studying Majorana zero mod...
Semiconductor InSb nanowires are expected to provide an excellent material platform for the study of...
Topological superconductivity is a state of matter that can host Majorana modes, the building blocks...
Topological superconductivity is a state of matter that can host Majorana modes, the building blocks...
Improving materials used to make qubits is crucial to further progress in quantum information proces...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Semiconductor InSb nanowires are expected to provide an excellent material platform for the study of...
Josephson junctions form a two-level system which is used as a building block for many types of supe...
Semiconductor InSb nanowires are expected to provide an excellent material platform for the study of...
We study bottom-up grown semiconductor indium antimonide nanowires that are coated with shells of ti...
Semiconductor nanowires such as InAs and InSb are promising materials for studying Majorana zero mod...
Semiconductor InSb nanowires are expected to provide an excellent material platform for the study of...
Topological superconductivity is a state of matter that can host Majorana modes, the building blocks...
Topological superconductivity is a state of matter that can host Majorana modes, the building blocks...
Improving materials used to make qubits is crucial to further progress in quantum information proces...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Semiconductor InSb nanowires are expected to provide an excellent material platform for the study of...
Josephson junctions form a two-level system which is used as a building block for many types of supe...
Semiconductor InSb nanowires are expected to provide an excellent material platform for the study of...
We study bottom-up grown semiconductor indium antimonide nanowires that are coated with shells of ti...
Semiconductor nanowires such as InAs and InSb are promising materials for studying Majorana zero mod...
Semiconductor InSb nanowires are expected to provide an excellent material platform for the study of...