Superconducting circuits consisting of a few low-anharmonic transmons coupled to readout and bus resonators can perform basic quantum computations. Since the number of qubits in such circuits is limited to not more than a few tens, the qubits can be designed to operate within the dispersive regime where frequency detunings are much stronger than coupling strengths. However, scaling up the number of qubits will bring the circuit out of the regime, and this invalidates current theories. We develop a formalism that allows to consistently diagonalize the superconducting circuit Hamiltonian beyond the dispersive regime. This will allow to study qubit-qubit interaction unperturbatively, therefore, our formalism remains valid and accurate at small...
The engineering of Kerr interactions is of great interest for processing quantum information in mult...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
Superconducting qubits are among the most promising and versatile building blocks on the road to a f...
Superconducting qubits are among the most promising and versatile building blocks on the road to a f...
Quantum computers have the capability to improve the efficiency and speed of many computational task...
For superconducting quantum processors consisting of low anharmonicity qubits such as transmons, we ...
We present a circuit construction for a fixed-frequency superconducting qubit and show how it can be...
Superconducting qubits are fabricated "loss-free" electrical circuits on a chip with size features o...
International audienceSpectral properties of a quantum circuit are efficiently read out by monitorin...
In this thesis, measurements on superconducting electrical circuits that exhibit quantum mechanical ...
The engineering of Kerr interactions is of great interest for processing quantum information in mult...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
The engineering of Kerr interactions is of great interest for processing quantum information in mult...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
Superconducting qubits are among the most promising and versatile building blocks on the road to a f...
Superconducting qubits are among the most promising and versatile building blocks on the road to a f...
Quantum computers have the capability to improve the efficiency and speed of many computational task...
For superconducting quantum processors consisting of low anharmonicity qubits such as transmons, we ...
We present a circuit construction for a fixed-frequency superconducting qubit and show how it can be...
Superconducting qubits are fabricated "loss-free" electrical circuits on a chip with size features o...
International audienceSpectral properties of a quantum circuit are efficiently read out by monitorin...
In this thesis, measurements on superconducting electrical circuits that exhibit quantum mechanical ...
The engineering of Kerr interactions is of great interest for processing quantum information in mult...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
The way to build a scalable and reliable quantum computer that truly exploits the quantum power face...
The engineering of Kerr interactions is of great interest for processing quantum information in mult...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...