Stochastic path integral formalism for continuous quantum measurement
arXiv:1507.07016 · doi:10.1103/PhysRevA.92.032125
Abstract
We generalize and extend the stochastic path integral formalism and action principle for continuous quantum measurement introduced in [A. Chantasri, J. Dressel and A. N. Jordan, Phys. Rev. A {\bf 88}, 042110 (2013)], where the optimal dynamics, such as the most-likely paths, are obtained by extremizing the action of the path integral. In this work, we apply exact functional methods as well as develop a perturbative approach to investigate the statistical behaviour of continuous quantum measurement, with examples given for the qubit case. For qubit measurement with zero qubit Hamiltonian, we find analytic solutions for average trajectories and their variances while conditioning on fixed initial and final states. For qubit measurement with unitary evolution, we use the perturbation method to compute expectation values, variances, and multi-time correlation functions of qubit trajectories in the short-time regime. Moreover, we consider continuous qubit measurement with feedback control, using the action principle to investigate the global dynamics of its most-likely paths, and finding that in an ideal case, qubit state stabilization at any desired pure state is possible with linear feedback. We also illustrate the power of the functional method by computing correlation functions for the qubit trajectories with a feedback loop to stabilize the qubit Rabi frequency.
24 pages, 4 figures and 1 table
References in corpus (14)
- A Straightforward Introduction to Continuous Quantum Measurement
- Quantum feedback control of a superconducting qubit: Persistent Rabi oscillations
- Quantum trajectory approach to circuit QED: Quantum jumps and the Zeno effect
- Undoing a weak quantum measurement of a solid-state qubit
- Mapping the optimal route between two quantum states
- Bayesian parameter inference from continuously monitored quantum systems
- Efficient Quantum State Estimation by Continuous Weak Measurement and Dynamical Control
- Qubit feedback and control with kicked quantum nondemolition measurements: A quantum Bayesian analysis
- Transport Statistics of Bistable Systems
- Reconsidering Rapid Qubit Purification by Feedback
- Stochastic dynamics of a Josephson junction threshold detector
- Rapid Measurement of Quantum Systems using Feedback Control
- The information about the state of a qubit gained by a weakly coupled detector
- Statistics of Measurement of Non-commuting Quantum Variables: Monitoring and Purification of a qubit
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- Optimal Zeno Dragging for Quantum Control: A Shortcut to Zeno with Action-based Scheduling Optimization
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- Nonequilibrium Steady State and Heat Transport in Nonlinear Open Quantum Systems: Stochastic Influence Action and Functional Perturbative Analysis
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- Phase Diagram of the Dynamics of a Precessing Qubit under Quantum Measurement
- Inequivalent ways to apply semi-classical smoothing to a quantum system
- Quantum state-preparation control in noisy environment via most-likely paths
- Continuous fuzzy measurement on two-level systems revisited
- Homodyne Measurement of a Non-Hermitian Qubit Undergoing Fluorescence
- Quantum Zeno effect: a qutrit controlled by a qubit
- Probability distributions of continuous measurement results for two non-commuting variables and conditioned quantum evolution
- Quantum state smoothing when Alice assumes the wrong type of monitoring by Bob
- CDJ-Pontryagin Optimal Control for General Continuously Monitored Quantum Systems