Lie-Semigroup Structures for Reachability and Control of Open Quantum Systems: Viewing Markovian Quantum Channels as Lie Semigroups and GKS-Lindblad Generators as Lie Wedge
arXiv:0811.3906 · doi:10.1016/S0034-4877(09)90022-2
Abstract
In view of controlling finite dimensional open quantum systems, we provide a unified Lie-semigroup framework describing the structure of completely positive trace-preserving maps. It allows (i) to identify the Kossakowski-Lindblad generators as the Lie wedge of a subsemigroup, (ii) to link properties of Lie semigroups such as divisibility with Markov properties of quantum channels, and (iii) to characterise reachable sets and controllability in open systems. We elucidate when time-optimal controls derived for the analogous closed system already give good fidelities in open systems and when a more detailed knowledge of the open system (e.g., in terms of the parameters of its Kossakowski-Lindblad master equation) is actually required for state-of-the-art optimal-control algorithms. -- As an outlook, we sketch the structure of a new, potentially more efficient numerical approach explicitly making use of the corresponding Lie wedge.
As accepted for "Reports on Mathematical Physics": includes new section relating divisibility of semigroups to Markovian quantum channels; 17 pages, 2 figures
References in corpus (14)
- Environment-Assisted Quantum Walks in Photosynthetic Energy Transfer
- Dephasing assisted transport: Quantum networks and biomolecules
- Environment-Assisted Quantum Transport
- Preparation of Entangled States by Quantum Markov Processes
- Assessing non-Markovian dynamics
- Vanishing quantum discord is necessary and sufficient for completely positive maps
- Dividing Quantum Channels
- Completely Positive Maps and Classical Correlations
- Optimal control of a qubit coupled to a non-Markovian environment
- Controllability of open quantum systems with Kraus-map dynamics
- Sufficient conditions for the convergence of the Magnus expansion
- Orbits of quantum states and geometry of Bloch vectors for -level systems
- The Significance of the -Numerical Range and the Local -Numerical Range in Quantum Control and Quantum Information
- Relative "-Numerical Ranges for Applications in Quantum Control and Quantum Information
Cited by in corpus (44)
- Control of quantum phenomena: Past, present, and future
- Training Schrödinger's cat: quantum optimal control
- Controlling open quantum systems: Tools, achievements, and limitations
- Comparing, Optimising and Benchmarking Quantum Control Algorithms in a Unifying Programming Framework
- Modeling and Control of Quantum Systems: An Introduction
- Introduction to the Pontryagin Maximum Principle for Quantum Optimal Control
- Optimal Control for Generating Quantum Gates in Open Dissipative Systems
- From pulses to circuits and back again: A quantum optimal control perspective on variational quantum algorithms
- Quantum System Identification
- Introduction to Theoretical and Experimental aspects of Quantum Optimal Control
- Gradient Flows for Optimisation and Quantum Control: Foundations and Applications
- Realistic and verifiable coherent control of excitonic states in a light harvesting complex
- Hamiltonian Control of Quantum Dynamical Semigroups: Stabilization and Convergence Speed
- The roles of drift and control field constraints upon quantum control speed limits
- Fast Route to Thermalization
- Exponential Stability of Subspaces for Quantum Stochastic Master Equations
- Illustrating the Geometry of Coherently Controlled Quantum Channels
- Quantum and classical resources for unitary design of open-system evolutions
- Optimal control and selectivity of qubits in contact with a structured environment
- Targeting pure quantum states by strong noncommutative dissipation
- Switching Quantum Dynamics for Fast Stabilization
- Symmetrizing quantum dynamics beyond gossip-type algorithms
- Exploring the Limits of Controlled Markovian Quantum Dynamics with Thermal Resources
- Towards Quantum Cybernetics
- Discrete-Time Controllability for Feedback Quantum Dynamics
- Reachability in Infinite Dimensional Unital Open Quantum Systems with Switchable GKS-Lindblad Generators
- Purity Speed Limit of Open Quantum Systems from Magic Subspaces
- Quantum optimal control in quantum technologies. Strategic report on current status, visions and goals for research in Europe
- Decoherence Control and Purification of Two-dimensional Quantum Density Matrices under Lindblad Dissipation
- Reachable Set Characterization of Open Quantum System by Quantum Speed Limit
- Understanding and Generalizing Unique Decompositions of Generators of Dynamical Semigroups
- Reachable Sets from Toy Models to Controlled Markovian Quantum Systems
- Lindbladians with multiple steady states: theory and applications
- Finite-Dimensional Stinespring Curves Can Approximate Any Dynamics
- Control limit on quantum state preparation under decoherence
- Bringing Quantum Systems under Control: A Tutorial Invitation to Quantum Computing and Its Relation to Bilinear Control Systems
- Quantum channels, complex Stiefel manifolds, and optimization
- Reachability in Controlled Markovian Quantum Systems: An Operator-Theoretic Approach
- Isotropy and control of dissipative quantum dynamics
- Reachability, Coolability, and Stabilizability of Open Markovian Quantum Systems with Fast Unitary Control
- Mixing of quantum states under Markovian dissipation and coherent control
- -Positive Maps: New Characterizations and a Generation Method
- Lindbladian purification
- Geometric quantum control and the random Schrödinger equation