International audienceRobust time-optimal control is known to feature constant (square) pulses. We analyze fast adiabatic dynamics that preserve robustness by using alternative smooth quasi-square pulses, typically represented by hyper-Gaussian pulses. We here consider the two protocols, robust inverse optimization and time-contracted adiabatic passage, allowing the design of the same pulse shape in both cases. The dynamics and their performance are compared. The superiority of the former protocol is shown
We apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-lev...
The ability to accurately control a quantum system is a fundamental requirement in many areas of mod...
Optimal control theory (OCT) is the basic and comprehensive method to obtain the optimal solutions o...
International audienceRobust time-optimal control is known to feature constant (square) pulses. We a...
International audienceWe study optimal quantum control robust against pulse inhomogeneities for vari...
International audienceWe develop an inverse geometric optimization technique that allows the derivat...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We consider the robust inverse geometric optimization of arbitrary population transfers and single-q...
International audienceThe ability of pulse-shaping devices to generate accurately quantum optimal co...
Considering the problem of the control of a two-state quantum system by an external field, we establ...
Abstract. Adiabatic quantum computation employs a slow change of a time-dependent control function (...
We apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-lev...
The ability to accurately control a quantum system is a fundamental requirement in many areas of mod...
Optimal control theory (OCT) is the basic and comprehensive method to obtain the optimal solutions o...
International audienceRobust time-optimal control is known to feature constant (square) pulses. We a...
International audienceWe study optimal quantum control robust against pulse inhomogeneities for vari...
International audienceWe develop an inverse geometric optimization technique that allows the derivat...
Adiabatic protocols are employed across a variety of quantum technologies, from implementing state p...
We consider the robust inverse geometric optimization of arbitrary population transfers and single-q...
International audienceThe ability of pulse-shaping devices to generate accurately quantum optimal co...
Considering the problem of the control of a two-state quantum system by an external field, we establ...
Abstract. Adiabatic quantum computation employs a slow change of a time-dependent control function (...
We apply an extension of the Pontryagin Maximum Principle to derive time-optimal controls of two-lev...
The ability to accurately control a quantum system is a fundamental requirement in many areas of mod...
Optimal control theory (OCT) is the basic and comprehensive method to obtain the optimal solutions o...