Representing NMR pulse shapes by analytic functions is widely employed in procedures for optimizing performance. Insights concerning pulse dynamics can be applied to the choice of appropriate functions that target specific performance criteria, focusing the solution search and reducing the space of possible pulse shapes that must be considered to a manageable level. Optimal control theory can accommodate significantly larger parameter spaces and has been able to tackle problems of much larger scope than more traditional optimization methods. However, its numerically generated pulses, as currently constructed, do not readily incorporate the capabilities of particular functional forms, and the pulses are not guaranteed to vary smoothly in tim...
Optimal control theory (OCT) has wide applicability in the quest for seeking optimal laser pulses in...
An optimal control algorithm for mitigating the effects of T1 and T2 relaxation during the applicati...
Modern NMR consoles give us excellent control over the intensities and phases of RF pulses, This has...
Representing NMR pulse shapes by analytic functions is widely employed in procedures for optimizing ...
This paper considers the use of optimal control theory in designing radio frequency excitation Pulse...
In this paper, we introduce optimal control-related gradient-based numerical algorithms for the de-s...
The past decade has demonstrated increasing interests in using optimal control based methods within ...
We propose a methodology to design optimal pulses for achieving quantum optimal control on molecular...
The past decade has demonstrated increasing interests in using optimal control based methods within ...
Work within this thesis advances optimal control algorithms for application to magnetic resonance sy...
Optimal control approaches have proved useful in designing RF pulses for large tip-angle application...
Orthogonal functions have been in existence for quite a long time but couldn’t gain much importance ...
Optimal control techniques are used to derive necessary conditions for designing optimum waveforms f...
International audienceWe study the application of Optimal Control Theory to Ion Cyclotron Resonance....
Optimal control theory (OCT) has wide applicability in the quest for seeking optimal laser pulses in...
An optimal control algorithm for mitigating the effects of T1 and T2 relaxation during the applicati...
Modern NMR consoles give us excellent control over the intensities and phases of RF pulses, This has...
Representing NMR pulse shapes by analytic functions is widely employed in procedures for optimizing ...
This paper considers the use of optimal control theory in designing radio frequency excitation Pulse...
In this paper, we introduce optimal control-related gradient-based numerical algorithms for the de-s...
The past decade has demonstrated increasing interests in using optimal control based methods within ...
We propose a methodology to design optimal pulses for achieving quantum optimal control on molecular...
The past decade has demonstrated increasing interests in using optimal control based methods within ...
Work within this thesis advances optimal control algorithms for application to magnetic resonance sy...
Optimal control approaches have proved useful in designing RF pulses for large tip-angle application...
Orthogonal functions have been in existence for quite a long time but couldn’t gain much importance ...
Optimal control techniques are used to derive necessary conditions for designing optimum waveforms f...
International audienceWe study the application of Optimal Control Theory to Ion Cyclotron Resonance....
Optimal control theory (OCT) has wide applicability in the quest for seeking optimal laser pulses in...
An optimal control algorithm for mitigating the effects of T1 and T2 relaxation during the applicati...
Modern NMR consoles give us excellent control over the intensities and phases of RF pulses, This has...