In superconducting quantum circuits, aluminum is one of the most widely used materials. It is currently also the superconductor of choice for the development of topological qubits. However, aluminum-based devices suffer from poor magnetic field compatibility. Herein, this limitation is resolved by showing that adatoms of heavy elements (e.g., platinum) increase the critical field of thin aluminum films by more than a factor of two. Using tunnel junctions, it is shown that the increased field resilience originates from spin-orbit scattering introduced by Pt. This property is exploited in the context of the superconducting proximity effect in semiconductor–superconductor hybrids, where it is shown that InSb nanowires strongly coupled to Al/Pt...
Magnetic-field-resilient superconducting circuits enable sensing applications and hybrid quantum com...
Superconductor-semiconductor hybrid devices are at the heart of several proposed approaches to quant...
Solid-state spin qubits are promising candidates for the realization of a quantum computer due to th...
In superconducting quantum circuits, aluminum is one of the most widely used materials. It is curren...
In superconducting quantum circuits, aluminum is one of the most widely used materials. It is curren...
The proximity effect in semiconductor-superconductor nanowires is expected to generate an in- duced ...
Hole gases in planar germanium can have high mobilities in combination with strong spin-orbit intera...
Superconductor-semiconductor hybrids are platforms for realizing effective p-wave superconductivity....
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Magnetic-field-resilient superconducting circuits enable sensing applications and hybrid quantum com...
We have investigated the superconducting properties of Pb nanoparticles with a diameter ranging from...
\u3cp\u3eWe study the effect of external electric fields on superconductor-semiconductor coupling by...
Magnetic-field-resilient superconducting circuits enable sensing applications and hybrid quantum com...
Superconductor-semiconductor hybrid devices are at the heart of several proposed approaches to quant...
Solid-state spin qubits are promising candidates for the realization of a quantum computer due to th...
In superconducting quantum circuits, aluminum is one of the most widely used materials. It is curren...
In superconducting quantum circuits, aluminum is one of the most widely used materials. It is curren...
The proximity effect in semiconductor-superconductor nanowires is expected to generate an in- duced ...
Hole gases in planar germanium can have high mobilities in combination with strong spin-orbit intera...
Superconductor-semiconductor hybrids are platforms for realizing effective p-wave superconductivity....
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Magnetic-field-resilient superconducting circuits enable sensing applications and hybrid quantum com...
We have investigated the superconducting properties of Pb nanoparticles with a diameter ranging from...
\u3cp\u3eWe study the effect of external electric fields on superconductor-semiconductor coupling by...
Magnetic-field-resilient superconducting circuits enable sensing applications and hybrid quantum com...
Superconductor-semiconductor hybrid devices are at the heart of several proposed approaches to quant...
Solid-state spin qubits are promising candidates for the realization of a quantum computer due to th...