We report progress with an old problem in magnetic resonance—that of the exponential scaling of simulation complexity with the number of spins. It is demonstrated below that a polynomially scaling algorithm can be obtained (and accurate simulations performed for over 200 coupled spins) if the dimension of the Liouville state space is reduced by excluding unimportant and unpopulated spin states. We found the class of such states to be surprisingly wide. It actually appears that a majority of states in large spin systems are not essential in magnetic resonance simulations and can safely be dropped from the state space. In restricted state spaces the spin dynamics simulations scale polynomially. In cases of favourable interaction topologies (s...
Computational modeling is becoming an essential tool in magnetic resonance to design and optimize ex...
We introduce a software library incorporating our recent research into efficient simulation algorith...
The design of simulations of free evolution in dipolar-coupled nuclear-spin systems using low-order ...
We report progress with an old problem in magnetic resonance—that of the exponential scaling of simu...
The conventional spin dynamics simulations are performed in direct products of state spaces of indiv...
We propose three basis screening methods for state space restriction in Liouville space simulations ...
We propose three basis screening methods for state space restriction in Liouville space simulations ...
Spin dynamics simulations are used to gain insight into important magnetic resonance experiments in...
The thesis commences with a detailed review of the background theory of spin dynamics simulations. S...
Nuclear magnetic resonance spectroscopy is one of the few remaining areas of physical chemistry for ...
AbstractNuclear magnetic resonance spectroscopy is one of the few remaining areas of physical chemis...
Nuclear magnetic resonance spectroscopy is one of the few remaining areas of physical chemistry for ...
Liquid state NMR is the only class of magnetic resonance experiments for which the simulation proble...
We introduce a new method, based on alternating optimization, for com-pact representation of spin Ha...
We propose a novel avenue for state space reduction in time domain Liouville space spin dynamics sim...
Computational modeling is becoming an essential tool in magnetic resonance to design and optimize ex...
We introduce a software library incorporating our recent research into efficient simulation algorith...
The design of simulations of free evolution in dipolar-coupled nuclear-spin systems using low-order ...
We report progress with an old problem in magnetic resonance—that of the exponential scaling of simu...
The conventional spin dynamics simulations are performed in direct products of state spaces of indiv...
We propose three basis screening methods for state space restriction in Liouville space simulations ...
We propose three basis screening methods for state space restriction in Liouville space simulations ...
Spin dynamics simulations are used to gain insight into important magnetic resonance experiments in...
The thesis commences with a detailed review of the background theory of spin dynamics simulations. S...
Nuclear magnetic resonance spectroscopy is one of the few remaining areas of physical chemistry for ...
AbstractNuclear magnetic resonance spectroscopy is one of the few remaining areas of physical chemis...
Nuclear magnetic resonance spectroscopy is one of the few remaining areas of physical chemistry for ...
Liquid state NMR is the only class of magnetic resonance experiments for which the simulation proble...
We introduce a new method, based on alternating optimization, for com-pact representation of spin Ha...
We propose a novel avenue for state space reduction in time domain Liouville space spin dynamics sim...
Computational modeling is becoming an essential tool in magnetic resonance to design and optimize ex...
We introduce a software library incorporating our recent research into efficient simulation algorith...
The design of simulations of free evolution in dipolar-coupled nuclear-spin systems using low-order ...