We characterize a niobium-based vertical Josephson interferometer which we propose to include in a superconducting loop for applications to quantum computation using flux qubits. The most interesting feature of this device is that the Josephson current is precisely modulated by a small transversal magnetic field parallel to superconducting loop plane from a maximum to zero, with fine control and precision. This device can be used to independently control the off-diagonal Hamiltonian terms of flux qubits and/or to control the flux transfer function of a superconducting transformer for inter-qubits coupling. © 2005 Published by Elsevier B.V
We demonstrate an Al superconducting quantum interference device in which the Josephson junctions ar...
Abstract. Superconducting circuits with Josephson tunnel junctions are interesting systems for resea...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
We present a niobium-based Josephson device as prototype for quantum computation with flux qubits. T...
We present niobium-based Josephson devices as prototypes for applications to quantum computation wi...
It has long been recognized that a control current Ia injected into the section of a two-junction su...
We report the realization of a ballistic Josephson interferometer. The interferometer is made from a...
We discuss and demonstrate a prototype of superconducting transformer with a flux transfer function ...
An interferometer structure was realized based on a GaAs/InAs core/shell nanowire and Nb superconduc...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
In quantum technology, several aspects of superconductivity such as proximity effect have studied to...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
Gate-tunable Josephson junctions (JJs) are the backbone of superconducting classical and quantum com...
Solid-state implementations of a quantum bit (qubit) are believed to be a promising approach for sca...
In quantum technology, several aspects of superconductivity such as proximity effect have studied to...
We demonstrate an Al superconducting quantum interference device in which the Josephson junctions ar...
Abstract. Superconducting circuits with Josephson tunnel junctions are interesting systems for resea...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
We present a niobium-based Josephson device as prototype for quantum computation with flux qubits. T...
We present niobium-based Josephson devices as prototypes for applications to quantum computation wi...
It has long been recognized that a control current Ia injected into the section of a two-junction su...
We report the realization of a ballistic Josephson interferometer. The interferometer is made from a...
We discuss and demonstrate a prototype of superconducting transformer with a flux transfer function ...
An interferometer structure was realized based on a GaAs/InAs core/shell nanowire and Nb superconduc...
A qubit was designed that can be fabricated with conventional electron beam lithography and is suite...
In quantum technology, several aspects of superconductivity such as proximity effect have studied to...
We present the design of a superconducting qubit that has circulating currents of opposite sign as i...
Gate-tunable Josephson junctions (JJs) are the backbone of superconducting classical and quantum com...
Solid-state implementations of a quantum bit (qubit) are believed to be a promising approach for sca...
In quantum technology, several aspects of superconductivity such as proximity effect have studied to...
We demonstrate an Al superconducting quantum interference device in which the Josephson junctions ar...
Abstract. Superconducting circuits with Josephson tunnel junctions are interesting systems for resea...
Here we use superconducting circuits as components for quantum computing and as model systems for no...