Parallel 1D semiconductor channels connected by a superconducting strip constitute the core platform in several recent quantum device proposals that rely, for example, on Andreev processes or topological effects. In order to realize these proposals, the actual material systems must have high crystalline purity, and the coupling between the different elements should be controllable in terms of their interfaces and geometry. A strategy for synthesizing double InAs nanowires by the vapor-liquid-solid mechanism using III-V molecular beam epitaxy is presented. A superconducting layer is deposited onto nanowires without breaking the vacuum, ensuring pristine interfaces between the superconductor and the two semiconductor nanowires. The method all...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Hybrid nanostructures consisting of two parallel InAs nanowires connected by an epitaxially grown su...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
Parallel 1D semiconductor channels connected by a superconducting strip constitute the core platform...
Chains of quantum dots coupled to superconductors are promising for the realization of the Kitaev mo...
Semiconductor nanowires are ideal for realizing various low-dimensional quantum devices. In particul...
Semiconducting–superconducting hybrids are vital components for the realization of high-performance ...
Andreev bound states in superconductor-quantum dot chains can provide a platform for quantum simula...
More and more materials, with a growing variety of properties, are built into electronic devices. Th...
We characterize in-situ grown parallel nanowires bridged by a superconducting island. The magnetic-f...
We report fabrication and characterization of InAs nanowire devices with two closely placed parallel...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
Semiconductor-superconductor hybrids are commonly used in research on topological quantum computatio...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Hybrid nanostructures consisting of two parallel InAs nanowires connected by an epitaxially grown su...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
Parallel 1D semiconductor channels connected by a superconducting strip constitute the core platform...
Chains of quantum dots coupled to superconductors are promising for the realization of the Kitaev mo...
Semiconductor nanowires are ideal for realizing various low-dimensional quantum devices. In particul...
Semiconducting–superconducting hybrids are vital components for the realization of high-performance ...
Andreev bound states in superconductor-quantum dot chains can provide a platform for quantum simula...
More and more materials, with a growing variety of properties, are built into electronic devices. Th...
We characterize in-situ grown parallel nanowires bridged by a superconducting island. The magnetic-f...
We report fabrication and characterization of InAs nanowire devices with two closely placed parallel...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...
Semiconductor-superconductor hybrids are commonly used in research on topological quantum computatio...
After a century from the quantum description of nature, the scientific community has laid the basis ...
Hybrid nanostructures consisting of two parallel InAs nanowires connected by an epitaxially grown su...
To form a coherent quantum transport in hybrid superconductor-semiconductor (S-Sm) junctions, the fo...