| openaire: EC/H2020/681311/EU//QUESS | openaire: EC/H2020/795159/EU//NEQCWe theoretically propose and experimentally implement a method of measuring a qubit by driving it close to the frequency of a dispersively coupled bosonic mode. The separation of the bosonic states corresponding to different qubit states begins essentially immediately at maximum rate, leading to a speedup in the measurement protocol. Also the bosonic mode can be simultaneously driven to optimize measurement speed and fidelity. We experimentally test this measurement protocol using a superconducting qubit coupled to a resonator mode. For a certain measurement time, we observe that the conventional dispersive readout yields close to 100% higher average measurement error...
High-fidelity and rapid readout of a qubit state is key to quantum computing and communication, and ...
High-fidelity and rapid readout of a qubit state is key to quantum computing and communication, and ...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
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...
The potential of superconducting qubits as the medium for a scalable quantum computer has motivated ...
Quantum computers have the capability to improve the efficiency and speed of many computational task...
Superconducting qubits have emerged as leading candidates as the foundation of quantum information p...
Superconducting qubits have emerged as leading candidates as the foundation of quantum information p...
We analyze the dispersive readout of superconducting charge and flux qubits as a quantum measurement...
We analyze the dispersive readout of superconducting charge and flux qubits as a quantum measurement...
We study how single-qubit dispersive readout works alongside two-qubit coupling. To make calculation...
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...
We investigate the quantum measurement physics of a system in which a phase-sensitive parametric amp...
The quantum state of a superconducting qubit nonresonantly coupled to a transmission line resonator ...
High-fidelity and rapid readout of a qubit state is key to quantum computing and communication, and ...
High-fidelity and rapid readout of a qubit state is key to quantum computing and communication, and ...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...
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...
The potential of superconducting qubits as the medium for a scalable quantum computer has motivated ...
Quantum computers have the capability to improve the efficiency and speed of many computational task...
Superconducting qubits have emerged as leading candidates as the foundation of quantum information p...
Superconducting qubits have emerged as leading candidates as the foundation of quantum information p...
We analyze the dispersive readout of superconducting charge and flux qubits as a quantum measurement...
We analyze the dispersive readout of superconducting charge and flux qubits as a quantum measurement...
We study how single-qubit dispersive readout works alongside two-qubit coupling. To make calculation...
Real-time monitoring of a quantum state provides powerful tools for studying the backaction of quant...
We investigate the quantum measurement physics of a system in which a phase-sensitive parametric amp...
The quantum state of a superconducting qubit nonresonantly coupled to a transmission line resonator ...
High-fidelity and rapid readout of a qubit state is key to quantum computing and communication, and ...
High-fidelity and rapid readout of a qubit state is key to quantum computing and communication, and ...
In this work we consider measurements on quantum systems emphasizing on read-out of superconducting ...