Control laws for selective transfer of information encoded in excitations of a quantum network, based on shaping the energy landscape using time-invariant, spatially-varying bias fields, can be successfully designed using numerical optimization. Such control laws, already departing from classicality by replacing closed-loop asymptotic stability with alternative notions of localization, have the intriguing property that for all practical purposes they achieve the upper bound on the fidelity, yet the (logarithmic) sensitivity of the fidelity to such structured perturbation as spin coupling errors and bias field leakages is nearly vanishing. Here, these differential sensitivity results are extended to large structured variations using $\mu$-de...
The precise, human control of quantum systems, by its definition, must combine models of the classic...
In this paper, we explore the effect of the purely quantum mechanical global phase factor on the pro...
Spin networks are endowed with an Information Transfer Fidelity (ITF), which defines an absolute upp...
Control laws for selective transfer of information encoded in excitations of a quantum network, base...
Networks of interacting spin-1/2 particles form the basis for a wide range o...
novel quantum landscape optimization with respect to bias field control inputs is developed with the...
Information encoded in networks of stationary, interacting spin-1/2 particles is central for many ap...
Selective transfer of information between spin-1/2 particles arranged in a ring is achieved by optim...
Propagation of information encoded in spin degrees of freedom through networks of coupled spins ena...
The design and analysis of controllers to regulate excitation transport in quantum spin rings presen...
Selective transfer of information between spin-1/2 particles arranged in a ring is achieved by optim...
The design and analysis of controllers to regulate excitation transport in quantum spin rings presen...
Information encoded in networks of stationary, interacting spin-1/2 particles is central for many ap...
Recent achievements in quantum control have resulted in advanced techniques for designing controller...
The precise, human control of quantum systems, by its definition, must combine models of the classic...
In this paper, we explore the effect of the purely quantum mechanical global phase factor on the pro...
Spin networks are endowed with an Information Transfer Fidelity (ITF), which defines an absolute upp...
Control laws for selective transfer of information encoded in excitations of a quantum network, base...
Networks of interacting spin-1/2 particles form the basis for a wide range o...
novel quantum landscape optimization with respect to bias field control inputs is developed with the...
Information encoded in networks of stationary, interacting spin-1/2 particles is central for many ap...
Selective transfer of information between spin-1/2 particles arranged in a ring is achieved by optim...
Propagation of information encoded in spin degrees of freedom through networks of coupled spins ena...
The design and analysis of controllers to regulate excitation transport in quantum spin rings presen...
Selective transfer of information between spin-1/2 particles arranged in a ring is achieved by optim...
The design and analysis of controllers to regulate excitation transport in quantum spin rings presen...
Information encoded in networks of stationary, interacting spin-1/2 particles is central for many ap...
Recent achievements in quantum control have resulted in advanced techniques for designing controller...
The precise, human control of quantum systems, by its definition, must combine models of the classic...
In this paper, we explore the effect of the purely quantum mechanical global phase factor on the pro...
Spin networks are endowed with an Information Transfer Fidelity (ITF), which defines an absolute upp...