We use properties of sub-Riemannian K -P problems and the optimal synthesis on SU(2) to solve the time optimal control of n non-interacting two level quantum systems (qubits) controlled in parallel with a control field bounded in L2 norm. Every qubit is controlled independently but the total energy of the controls used is bounded. For this system, we describe the reachable set at every time. Moreover, we compute the diameter, that is, the worst case minimum time. The mathematical problem is motivated by the control of two level systems with different resonance frequencies where the control fields are obtained from a single signal having bounded energy
Abstract. In this paper we will study the pulse sequences in NMR spec-troscopy and quantum computing...
Experiments in nuclear magnetic resonance (NMR) spectroscopy and NMR quantum computing require contr...
The development of efficient time optimal control strategies for coupled spin systems plays a fundam...
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 ...
We study the time optimal control problem for the evolution operator of an $n$ -level quantum sys...
We study time-optimal protocols for controlling quantum systems which show several avoided level cro...
Abstract: We study a quantum spin system acting on a single quantum bit. The evolution of this syste...
Abstract. We solve the problem of steering a three-level quantum system from one eigen-state to anot...
We solve the problem of steering a three-level quantum system from one eigen-state to another in min...
In this paper, we demonstrate that optimal control algorithms can be used to speed up the implementa...
Abstract We consider the optimal control problem in a two-qubit system with bounded amplitude. Two c...
We apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-lev...
We present an algebraic framework to study the time-optimal synthesis of arbitrary unitaries in SU(2...
International audienceWe propose an analysis of the time-optimal control of a dissipative two-level ...
Abstract. In this paper we will study the pulse sequences in NMR spec-troscopy and quantum computing...
Experiments in nuclear magnetic resonance (NMR) spectroscopy and NMR quantum computing require contr...
The development of efficient time optimal control strategies for coupled spin systems plays a fundam...
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 ...
We study the time optimal control problem for the evolution operator of an $n$ -level quantum sys...
We study time-optimal protocols for controlling quantum systems which show several avoided level cro...
Abstract: We study a quantum spin system acting on a single quantum bit. The evolution of this syste...
Abstract. We solve the problem of steering a three-level quantum system from one eigen-state to anot...
We solve the problem of steering a three-level quantum system from one eigen-state to another in min...
In this paper, we demonstrate that optimal control algorithms can be used to speed up the implementa...
Abstract We consider the optimal control problem in a two-qubit system with bounded amplitude. Two c...
We apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-lev...
We present an algebraic framework to study the time-optimal synthesis of arbitrary unitaries in SU(2...
International audienceWe propose an analysis of the time-optimal control of a dissipative two-level ...
Abstract. In this paper we will study the pulse sequences in NMR spec-troscopy and quantum computing...
Experiments in nuclear magnetic resonance (NMR) spectroscopy and NMR quantum computing require contr...
The development of efficient time optimal control strategies for coupled spin systems plays a fundam...