The realization of hybrid superconductor–semiconductor quantum devices, in particular a topological qubit, calls for advanced techniques to readily and reproducibly engineer induced superconductivity in semiconductor nanowires. Here, we introduce an on-chip fabrication paradigm based on shadow walls that offers substantial advances in device quality and reproducibility. It allows for the implementation of hybrid quantum devices and ultimately topological qubits while eliminating fabrication steps such as lithography and etching. This is critical to preserve the integrity and homogeneity of the fragile hybrid interfaces. The approach simplifies the reproducible fabrication of devices with a hard induced superconducting gap and ballistic norm...
Superconductor-semiconductor-nanowire hybrid structures can serve as versatile building blocks to re...
Parallel 1D semiconductor channels connected by a superconducting strip constitute the core platform...
Scalability in the fabrication and operation of quantum computers is key to move beyondthe NISQ era....
The realization of hybrid superconductor–semiconductor quantum devices, in particular a topological ...
Semiconducting–superconducting hybrids are vital components for the realization of high-performance ...
Written using The Block Method. Data on Zenodo DOI: https://doi.org/10.5281/zenodo.6416083More and m...
The hybrid superconductor-semiconductor-superconductor (S-Sm-S) structures have been proposed to be ...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
Semiconductor nanowires are ideal for realizing various low-dimensional quantum devices. In particul...
The interplay of Dirac physics and induced superconductivity at the interface of a 3D topological in...
Materials possessing superconducting properties are highly sought after due to their potential techn...
The hybrid superconductor-semiconductor-superconductor (S-Sm-S) structures have been proposed to be ...
Here, we demonstrate an on-chip, integrated and scalable hybrid superconducting-semiconducting quant...
Hybrid InSb nanowire-superconductor devices are promising for investigating Majorana modes and topol...
Superconductor-semiconductor-nanowire hybrid structures can serve as versatile building blocks to re...
Parallel 1D semiconductor channels connected by a superconducting strip constitute the core platform...
Scalability in the fabrication and operation of quantum computers is key to move beyondthe NISQ era....
The realization of hybrid superconductor–semiconductor quantum devices, in particular a topological ...
Semiconducting–superconducting hybrids are vital components for the realization of high-performance ...
Written using The Block Method. Data on Zenodo DOI: https://doi.org/10.5281/zenodo.6416083More and m...
The hybrid superconductor-semiconductor-superconductor (S-Sm-S) structures have been proposed to be ...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
Semiconductor nanowires are ideal for realizing various low-dimensional quantum devices. In particul...
The interplay of Dirac physics and induced superconductivity at the interface of a 3D topological in...
Materials possessing superconducting properties are highly sought after due to their potential techn...
The hybrid superconductor-semiconductor-superconductor (S-Sm-S) structures have been proposed to be ...
Here, we demonstrate an on-chip, integrated and scalable hybrid superconducting-semiconducting quant...
Hybrid InSb nanowire-superconductor devices are promising for investigating Majorana modes and topol...
Superconductor-semiconductor-nanowire hybrid structures can serve as versatile building blocks to re...
Parallel 1D semiconductor channels connected by a superconducting strip constitute the core platform...
Scalability in the fabrication and operation of quantum computers is key to move beyondthe NISQ era....