International audienceWe apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-level quantum systems by means of piecewise constant pulses. Global optimal solutions are obtained for state-to-state transfer in the cases with one and two controls. Exact quantum speed limits are established as a function of the sampling period. We observe numerically an exponential convergence towards the minimum time in the continuous limit when this period goes to zero. We show that this convergence is only polynomial for a linearized quantum system. We discuss the experimental impact of this result
Optimal control theory is a promising candidate for a drastic improvement of the performance of quan...
Optimal control theory is a promising candidate for a drastic improvement of the performance of qua...
Abstract—The objective of this article is to complete prelimi-nary results from [5], [18] concerning...
International audienceWe apply an extension of the Pontryagin Maximum Principle to derive time-optim...
Quantum mechanics establishes a fundamental bound for the minimum evolution time between two states ...
We study time-optimal protocols for controlling quantum systems which show several avoided level cro...
International audienceIn this paper we consider the minimum time population transfer problem for a t...
We consider a two-level quantum system (quantum bit), S, which can only be controlled by modulating ...
International audienceWe propose an analysis of the time-optimal control of a dissipative two-level ...
We consider a two-level quantum system prepared in an arbitrary initial state and relaxing to a stea...
The objective of this article is to present techniques of geometric time-optimal control developed t...
Abstract. We solve the problem of steering a three-level quantum system from one eigen-state to anot...
In this paper we consider the minimum time population transfer problem for a two level quantum syste...
Time-optimal control theory provides recipes to achieve quantum operations with high fidelity and sp...
International audienceHere we study the optimum efficiency of the excitation of maximum quantum (Max...
Optimal control theory is a promising candidate for a drastic improvement of the performance of quan...
Optimal control theory is a promising candidate for a drastic improvement of the performance of qua...
Abstract—The objective of this article is to complete prelimi-nary results from [5], [18] concerning...
International audienceWe apply an extension of the Pontryagin Maximum Principle to derive time-optim...
Quantum mechanics establishes a fundamental bound for the minimum evolution time between two states ...
We study time-optimal protocols for controlling quantum systems which show several avoided level cro...
International audienceIn this paper we consider the minimum time population transfer problem for a t...
We consider a two-level quantum system (quantum bit), S, which can only be controlled by modulating ...
International audienceWe propose an analysis of the time-optimal control of a dissipative two-level ...
We consider a two-level quantum system prepared in an arbitrary initial state and relaxing to a stea...
The objective of this article is to present techniques of geometric time-optimal control developed t...
Abstract. We solve the problem of steering a three-level quantum system from one eigen-state to anot...
In this paper we consider the minimum time population transfer problem for a two level quantum syste...
Time-optimal control theory provides recipes to achieve quantum operations with high fidelity and sp...
International audienceHere we study the optimum efficiency of the excitation of maximum quantum (Max...
Optimal control theory is a promising candidate for a drastic improvement of the performance of quan...
Optimal control theory is a promising candidate for a drastic improvement of the performance of qua...
Abstract—The objective of this article is to complete prelimi-nary results from [5], [18] concerning...