Dynamics of a qubit while simultaneously monitoring its relaxation and dephasing
arXiv:1711.01208 · doi:10.1038/s41467-018-04372-9
Abstract
Decoherence originates from the leakage of quantum information into external degrees of freedom. For a qubit the two main decoherence channels are relaxation and dephasing. Here, we report an experiment on a superconducting qubit where we retrieve part of the lost information in both of these channels. We demonstrate that raw averaging the corresponding measurement records provides a full quantum tomography of the qubit state where all three components of the effective spin-1/2 are simultaneously measured. From single realizations of the experiment, it is possible to infer the quantum trajectories followed by the qubit state conditioned on relaxation and/or dephasing channels. The incompatibility between these quantum measurements of the qubit leads to observable consequences in the statistics of quantum states. The high level of controllability of superconducting circuits enables us to explore many regimes from the Zeno effect to underdamped Rabi oscillations depending on the relative strengths of driving, dephasing and relaxation.
Supplemental videos can be found at http://physinfo.fr/publications/Ficheux1710.html and supplemental information can be found as an ancillary file on arxiv
References in corpus (17)
- Quantum back-action of variable-strength measurement
- The role of quantum measurement in stochastic thermodynamics
- Mapping the optimal route between two quantum states
- Dynamics of simultaneously measured non-commuting observables
- Widely tunable, non-degenerate three-wave mixing microwave device operating near the quantum limit
- Time-Symmetric Quantum Theory of Smoothing
- Prediction and retrodiction for a continuously monitored superconducting qubit
- Signal-to-pump back-action and self-oscillation in Double-Pump Josephson Parametric Amplifier
- Quantum caustics in resonance fluorescence trajectories
- Simultaneous continuous measurement of non-commuting observables: quantum state correlations
- Homodyne monitoring of post-selected decay
- Prediction and Characterization of Multiple Extremal Paths in Continuously Monitored Qubits
- Non-equilibrium thermodynamics of continuously measured quantum systems: a circuit-QED implementation
- Single Shot Quantum State Estimation via a Continuous Measurement in the Strong Backaction Regime
- Quantum smoothing for classical mixtures
- Probability distributions of continuous measurement results for conditioned quantum evolution
- Optimal waveform estimation for classical and quantum systems via time-symmetric smoothing
Cited by in corpus (53)
- A perspective on multiparameter quantum metrology: from theoretical tools to applications in quantum imaging
- Using a Recurrent Neural Network to Reconstruct Quantum Dynamics of a Superconducting Qubit from Physical Observations
- Noisy quantum metrology enhanced by continuous nondemolition measurement
- Energy dynamics, heat production and heat-work conversion with qubits: towards the development of quantum machines
- Feedback-Induced Quantum Phase Transitions Using Weak Measurements
- Learning the dynamics of open quantum systems from their steady states
- Energetics of a Single Qubit Gate
- Daemonic ergotropy in continuously-monitored open quantum batteries
- High-efficiency measurement of an artificial atom embedded in a parametric amplifier
- Quantum-tailored machine-learning characterization of a superconducting qubit
- Multiplexed photon number measurement
- A pedagogical introduction to continuously monitored quantum systems and measurement-based feedback
- Measuring Fluorescence to Track a Quantum Emitter's State: A Theory Review
- Chaos in Continuously Monitored Quantum Systems: An Optimal Path Approach
- Control of Stochastic Quantum Dynamics by Differentiable Programming
- Continuous quantum error correction for evolution under time-dependent Hamiltonians
- Quantum rifling: protecting a qubit from measurement back-action
- Sequential dispersive measurement of a superconducting qubit
- Feedback-assisted quantum search by continuous-time quantum walks
- Experimental repetitive quantum channel simulation
- Experimental simulation of daemonic work extraction in open quantum batteries on a digital quantum computer
- Calibration of Drive Non-Linearity for Arbitrary-Angle Single-Qubit Gates Using Error Amplification
- Error correcting Bacon-Shor code with continuous measurement of noncommuting operators
- Entanglement-Preserving Limit Cycles from Sequential Quantum Measurements and Feedback
- Autonomous quantum clocks using athermal resources
- Closed-System Solution of the 1D Atom from Collision Model
- Asymmetries of thermal processes in open quantum systems
- Optimal Zeno Dragging for Quantum Control: A Shortcut to Zeno with Action-based Scheduling Optimization
- Quantum polyspectra for modeling and evaluating quantum transport measurements: A unifying approach to the strong and weak measurement regime
- How to design quantum-jump trajectories via distinct master equation representations
- Maxwell's demon in superconducting circuits
- Monitoring-induced Entanglement Entropy and Sampling Complexity
- Spin Environment of a Superconducting Qubit in High Magnetic Fields
- Entanglement of a pair of quantum emitters via continuous fluorescence measurements: a tutorial
- Random-time quantum measurements
- Correlators exceeding one in continuous measurements of superconducting qubits
- State-space distribution and dynamical flow for closed and open quantum systems
- How to estimate past measurement interventions on a quantum system undergoing continuous monitoring
- Simultaneous Measurements of Noncommuting Observables. Positive Transformations and Instrumental Lie Groups
- Observation of partial and infinite-temperature thermalization induced by repeated measurements on a quantum hardware
- Noise-assisted and monitoring-enhanced quantum bath tagging
- The generic phase diagram of spin relaxation in solids and the Loschmidt echo
- Qubit-oscillator relationships in the open quantum Rabi model: the role of dissipation
- Daemonic ergotropy of Gaussian quantum states and the role of measurement-induced purification via general-dyne detection
- Fermionic duality: General symmetry of open systems with strong dissipation and memory
- Noise-Canceling Quantum Feedback: non-Hermitian Dynamics with Applications to State Preparation and Magic State Distillation
- Homodyne Measurement of a Non-Hermitian Qubit Undergoing Fluorescence
- Boosting Work Extraction in Quantum Batteries via Continuous Environment Monitoring
- Weak continuous measurements require more work than strong ones
- Quantum Measurement Induced Radiative Processes in Continuously Monitored Optical Environments
- Continuous collapse models on finite dimensional Hilbert spaces
- Einselection from incompatible decoherence channels
- Bounding fidelity in quantum feedback control: theory and applications to Dicke state preparation