We analyze the dispersive readout of superconducting charge and flux qubits as a quantum measurement process. The measurement oscillator frequency is considered much lower than the qubit frequency. This regime is interesting because large detuning allows for strong coupling between the measurement oscillator and the signal transmission line, thus allowing for fast readout. Due to the large detuning we may not use the rotating wave approximation in the oscillator-qubit coupling. Instead we start from an approximation where the qubit follows the oscillator adiabatically, and show that non-adiabatic corrections are small. We find analytic expressions for the measurement time, as well as for the back-action, both while measuring and in the off-...
Though superconducting qubits offer the potential for a scalable quantum computing architecture, the...
A flux qubit readout scheme involving a dispersive technique coupled to a microstrip superconducting...
Superconducting qubits have in recent years become a promising candidate for the implementation of a...
We analyze the dispersive readout of superconducting charge and flux qubits as a quantum measurement...
For quantum computers to become reality, not only do the qubits have to be carefully engineered to b...
We discuss the current situation concerning measurement and readout of Josephson-junction based qubi...
In this work we consider measurements on quantum systems emphasizingon read-out of superconducting q...
Quantum computers have the capability to improve the efficiency and speed of many computational task...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
The quantum state of a superconducting qubit nonresonantly coupled to a transmission line resonator ...
High-fidelity initialization, manipulation, and measurement of qubits are important in quantum compu...
We theoretically propose and experimentally implement a method of measuring a qubit by driving it cl...
We theoretically propose and experimentally implement a method of measuring a qubit by driving it cl...
| openaire: EC/H2020/681311/EU//QUESS | openaire: EC/H2020/795159/EU//NEQCWe theoretically propose a...
We present analyses and measurements of the readout scheme in a dispersive circuit QED system by var...
Though superconducting qubits offer the potential for a scalable quantum computing architecture, the...
A flux qubit readout scheme involving a dispersive technique coupled to a microstrip superconducting...
Superconducting qubits have in recent years become a promising candidate for the implementation of a...
We analyze the dispersive readout of superconducting charge and flux qubits as a quantum measurement...
For quantum computers to become reality, not only do the qubits have to be carefully engineered to b...
We discuss the current situation concerning measurement and readout of Josephson-junction based qubi...
In this work we consider measurements on quantum systems emphasizingon read-out of superconducting q...
Quantum computers have the capability to improve the efficiency and speed of many computational task...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
The quantum state of a superconducting qubit nonresonantly coupled to a transmission line resonator ...
High-fidelity initialization, manipulation, and measurement of qubits are important in quantum compu...
We theoretically propose and experimentally implement a method of measuring a qubit by driving it cl...
We theoretically propose and experimentally implement a method of measuring a qubit by driving it cl...
| openaire: EC/H2020/681311/EU//QUESS | openaire: EC/H2020/795159/EU//NEQCWe theoretically propose a...
We present analyses and measurements of the readout scheme in a dispersive circuit QED system by var...
Though superconducting qubits offer the potential for a scalable quantum computing architecture, the...
A flux qubit readout scheme involving a dispersive technique coupled to a microstrip superconducting...
Superconducting qubits have in recent years become a promising candidate for the implementation of a...