In this work, we consider a model of two qubits driven by coherent and incoherent time-dependent controls. The dynamics of the system is governed by a Gorini-Kossakowski-Sudarshan-Lindblad master equation, where coherent control enters into the Hamiltonian and incoherent control enters into both the Hamiltonian (via Lamb shift) and the dissipative superoperator. We consider two physically different classes of interaction with coherent control and study the optimal control problem of state preparation formulated as minimization of the Hilbert-Schmidt distance's square between the final density matrix and a given target density matrix at some fixed target time. Taking into account that incoherent control by its physical meaning is a non-negat...
Quantum control is an important prerequisite for quantum devices [1]. A major obstacle is the fact t...
A rapid incoherent control scheme for driving a simple qubit system from an initial mixed state to a...
Methods of optimal control are applied to a model system of interacting two-level particles (e.g., s...
The work considers an open qutrit system whose density matrix $\rho(t)$ evolution is governed by the...
In this work, we consider an environment formed by incoherent photons as a resource for controlling ...
In this thesis we investigate the controlled (coherent, i.e. without feedback from measurements) dyn...
The article considers a two-level open quantum system evolving under the action ofcoherent and incoh...
This paper considers a risk-sensitive optimal control problem for a field-mediated interconnection o...
Quantum coherence inherently affects the dynamics and the performances of a quantum machine. Coheren...
A central challenge for implementing quantum computing in the solid state is decoupling the qubits f...
Optimal control methods for implementing quantum modules with least amount of dissipation are devise...
Unitary control and decoherence appear to be irreconcilable in quantum mechanics. When a quantum sys...
An important problem in quantum computation is generation of single-qubit quantum gates such as Hada...
We present a general method to efficiently design quantum control procedures for non-Markovian probl...
We study the correction of errors intervening in two qubits dissipating into their own environments....
Quantum control is an important prerequisite for quantum devices [1]. A major obstacle is the fact t...
A rapid incoherent control scheme for driving a simple qubit system from an initial mixed state to a...
Methods of optimal control are applied to a model system of interacting two-level particles (e.g., s...
The work considers an open qutrit system whose density matrix $\rho(t)$ evolution is governed by the...
In this work, we consider an environment formed by incoherent photons as a resource for controlling ...
In this thesis we investigate the controlled (coherent, i.e. without feedback from measurements) dyn...
The article considers a two-level open quantum system evolving under the action ofcoherent and incoh...
This paper considers a risk-sensitive optimal control problem for a field-mediated interconnection o...
Quantum coherence inherently affects the dynamics and the performances of a quantum machine. Coheren...
A central challenge for implementing quantum computing in the solid state is decoupling the qubits f...
Optimal control methods for implementing quantum modules with least amount of dissipation are devise...
Unitary control and decoherence appear to be irreconcilable in quantum mechanics. When a quantum sys...
An important problem in quantum computation is generation of single-qubit quantum gates such as Hada...
We present a general method to efficiently design quantum control procedures for non-Markovian probl...
We study the correction of errors intervening in two qubits dissipating into their own environments....
Quantum control is an important prerequisite for quantum devices [1]. A major obstacle is the fact t...
A rapid incoherent control scheme for driving a simple qubit system from an initial mixed state to a...
Methods of optimal control are applied to a model system of interacting two-level particles (e.g., s...