The co-integration of spin, superconducting, and topological systems is emerging as an exciting pathway for scalable and high-fidelity quantum information technology. High-mobility planar germanium is a front-runner semiconductor for building quantum processors with spin-qubits, but progress with hybrid superconductor-semiconductor devices is hindered by the difficulty in obtaining a superconducting hard gap, that is, a gap free of subgap states. Here, we address this challenge by developing a low-disorder, oxide-free interface between high-mobility planar germanium and a germanosilicide parent superconductor. This superconducting contact is formed by the thermally-activated solid phase reaction between a metal, platinum, and the Ge/SiGe se...
Hole gases in planar germanium can have high mobilities in combination with strong spin-orbit intera...
Superconductor/semiconductor hybrid devices have attracted increasing interest in the past years. Su...
Holes in planar Ge have high mobilities, strong spin-orbit interaction and electrically tunable g-fa...
The co-integration of spin, superconducting, and topological systems is emerging as an exciting path...
The co-integration of spin, superconducting, and topological systems is emerging as an exciting path...
The co-integration of spin, superconducting, and topological systems is emerging as an exciting path...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They ca...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They ca...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
In the effort to develop disruptive quantum technologies, germanium is emerging as a versatile mater...
Hole gases in planar germanium can have high mobilities in combination with strong spin-orbit intera...
In the effort to develop disruptive quantum technologies, germanium is emerging as a versatile mater...
Hole gases in planar germanium can have high mobilities in combination with strong spin-orbit intera...
Superconductor/semiconductor hybrid devices have attracted increasing interest in the past years. Su...
Holes in planar Ge have high mobilities, strong spin-orbit interaction and electrically tunable g-fa...
The co-integration of spin, superconducting, and topological systems is emerging as an exciting path...
The co-integration of spin, superconducting, and topological systems is emerging as an exciting path...
The co-integration of spin, superconducting, and topological systems is emerging as an exciting path...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They ca...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They ca...
Superconductors and semiconductors are crucial platforms in the field of quantum computing. They can...
In the effort to develop disruptive quantum technologies, germanium is emerging as a versatile mater...
Hole gases in planar germanium can have high mobilities in combination with strong spin-orbit intera...
In the effort to develop disruptive quantum technologies, germanium is emerging as a versatile mater...
Hole gases in planar germanium can have high mobilities in combination with strong spin-orbit intera...
Superconductor/semiconductor hybrid devices have attracted increasing interest in the past years. Su...
Holes in planar Ge have high mobilities, strong spin-orbit interaction and electrically tunable g-fa...