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Optimal control of coupled spin dynamics: design of NMR pulse sequences by gradient ascent algorithms
Authors:Khaneja Navin  Reiss Timo  Kehlet Cindie  Schulte-Herbrüggen Thomas  Glaser Steffen J
Institution:Division of Applied Sciences, Harvard University, Cambridge, MA 02138, USA. navin@hrl.harvard.edu
Abstract:In this paper, we introduce optimal control algorithm for the design of pulse sequences in NMR spectroscopy. This methodology is used for designing pulse sequences that maximize the coherence transfer between coupled spins in a given specified time, minimize the relaxation effects in a given coherence transfer step or minimize the time required to produce a given unitary propagator, as desired. The application of these pulse engineering methods to design pulse sequences that are robust to experimentally important parameter variations, such as chemical shift dispersion or radiofrequency (rf) variations due to imperfections such as rf inhomogeneity is also explained.
Keywords:Pulse design  Sequence optimization  Time-optimal coherence transfer  Relaxation-optimized experiments  Time-optimal realization of unitary operators  Quantum gates  GRAPE algorithm  Optimal control theory
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