Although the performance of qubits has been improved in recent years, the differences in the microscopic atomic structure of the Josephson junctions, the core devices prepared under different preparation conditions, are still underexplored. In this paper, the effects of the oxygen temperature and upper aluminum deposition rate on the topology of the barrier layer in the aluminum-based Josephson junctions have been presented by classical molecular dynamics simulations. We apply a Voronoi tessellation method to characterize the topology of the interface and central regions of the barrier layers. We find that when the oxygen temperature is 573 K and the upper aluminum deposition rate is 4 Å/ps, the barrier has the fewest atomic voids and the m...
Abstract At present, the performance of superconducting qubits is limited by decoher-ence. Strong de...
Aluminium based tunnel junctions are currently used as elements in superconducting circuits for the ...
Abstract We have found that crystalline Josephson junctions have problems with control of critical c...
Although the performance of qubits has been improved in recent years, the differences in the microsc...
Aluminium tunnel junctions are key components of a wide variety of electronic devices. These superco...
Abstract Aluminium oxide (AlOx) tunnel junctions are important components in a range of nanoelectri...
Superconducting circuits are a rapidly evolving field of research for constructing quantum computers...
Al/AlOx/Al Josephson junctions are the building blocks of a wide range of superconducting quantum de...
Al/AlOx/Al-layer systems are frequently used for Josephson junction-based superconducting devices. A...
Al/AlOx/Al tunnel junctions, also known as Josephson Junctions, are key components of many establish...
We present a computational study of the adhesive and structural properties of the Al/Al2O3 interface...
This work is concerned with Al/Al-oxide(AlOx)/Al-layer systems which are important for Josephson-jun...
Abstract — Atomic layer deposition (ALD) provides a promising approach for deposition of ultrathin l...
The interface between the Al bottom contact layer and Si substrates in Al based Josephson junctions ...
Josephson junction as a novel superconducting electronic component plays an important role in most s...
Abstract At present, the performance of superconducting qubits is limited by decoher-ence. Strong de...
Aluminium based tunnel junctions are currently used as elements in superconducting circuits for the ...
Abstract We have found that crystalline Josephson junctions have problems with control of critical c...
Although the performance of qubits has been improved in recent years, the differences in the microsc...
Aluminium tunnel junctions are key components of a wide variety of electronic devices. These superco...
Abstract Aluminium oxide (AlOx) tunnel junctions are important components in a range of nanoelectri...
Superconducting circuits are a rapidly evolving field of research for constructing quantum computers...
Al/AlOx/Al Josephson junctions are the building blocks of a wide range of superconducting quantum de...
Al/AlOx/Al-layer systems are frequently used for Josephson junction-based superconducting devices. A...
Al/AlOx/Al tunnel junctions, also known as Josephson Junctions, are key components of many establish...
We present a computational study of the adhesive and structural properties of the Al/Al2O3 interface...
This work is concerned with Al/Al-oxide(AlOx)/Al-layer systems which are important for Josephson-jun...
Abstract — Atomic layer deposition (ALD) provides a promising approach for deposition of ultrathin l...
The interface between the Al bottom contact layer and Si substrates in Al based Josephson junctions ...
Josephson junction as a novel superconducting electronic component plays an important role in most s...
Abstract At present, the performance of superconducting qubits is limited by decoher-ence. Strong de...
Aluminium based tunnel junctions are currently used as elements in superconducting circuits for the ...
Abstract We have found that crystalline Josephson junctions have problems with control of critical c...