We present a general method to efficiently design optimal control sequences for non-Markovian open quantum systems, and illustrate it by optimizing the shape of a laser pulse to prepare a quantum dot in a specific state. The optimization of control procedures for quantum systems with strong coupling to structured environments—where time-local descriptions fail—is a computationally challenging task. We modify the numerically exact time evolving matrix product operator (TEMPO) method, such that it allows the repeated computation of the time evolution of the reduced system density matrix for various sets of control parameters at very low computational cost. This method is potentially useful for studying numerous optimal control problems, in pa...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
International audienceIn this paper, we review an open-loop evolution control method, called the non...
Optimal control theory and optimal control experiments are state-of-the-art tools to control quantum...
Funding: G.E.F. acknowledges support from EPSRC (EP/L015110/1). B.W.L. and J.K. acknowledge support ...
We present a general method to efficiently design quantum control procedures for non-Markovian probl...
The control of matter and energy at a fundamental level will be a cornerstone of new technologies fo...
This thesis focuses on the optimal control of a class of closed 1 quantum systems. It encompasses an...
An optimal control theory for open quantum systems is constructed containing non-Markovian dissipati...
Abstract. A new class of cost functionals for optimal control of quantum systems which produces cont...
We consider finite-dimensional Markovian open quantum systems, and characterize the extent to which ...
Quantum control is an important prerequisite for quantum devices [1]. A major obstacle is the fact t...
We implement quantum optimal control algorithms for closed and open quantum systems based on automat...
Optimal control of finite-level quantum systems is investigated, and iterative solution schemes for ...
Quantum coherence inherently affects the dynamics and the performances of a quantum machine. Coheren...
AbstractOptimal control of finite-level quantum systems is investigated, and iterative solution sche...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
International audienceIn this paper, we review an open-loop evolution control method, called the non...
Optimal control theory and optimal control experiments are state-of-the-art tools to control quantum...
Funding: G.E.F. acknowledges support from EPSRC (EP/L015110/1). B.W.L. and J.K. acknowledge support ...
We present a general method to efficiently design quantum control procedures for non-Markovian probl...
The control of matter and energy at a fundamental level will be a cornerstone of new technologies fo...
This thesis focuses on the optimal control of a class of closed 1 quantum systems. It encompasses an...
An optimal control theory for open quantum systems is constructed containing non-Markovian dissipati...
Abstract. A new class of cost functionals for optimal control of quantum systems which produces cont...
We consider finite-dimensional Markovian open quantum systems, and characterize the extent to which ...
Quantum control is an important prerequisite for quantum devices [1]. A major obstacle is the fact t...
We implement quantum optimal control algorithms for closed and open quantum systems based on automat...
Optimal control of finite-level quantum systems is investigated, and iterative solution schemes for ...
Quantum coherence inherently affects the dynamics and the performances of a quantum machine. Coheren...
AbstractOptimal control of finite-level quantum systems is investigated, and iterative solution sche...
The ability to characterise a Hamiltonian with high precision is crucial for the implementation of q...
International audienceIn this paper, we review an open-loop evolution control method, called the non...
Optimal control theory and optimal control experiments are state-of-the-art tools to control quantum...