By making use of the dynamical algebraic method we investigate a quantum system consisting of superconducting qubits interacting with data buses, where the qubits are driven by time-dependent electromagnetic field and obtain an explicit expression of time evolution operator. Furthermore, we explore the entanglement dynamics and the influence of the time-dependent electromagnetic field and the initial state on the entanglement sudden death and birth for the system. It is shown that the entanglement between the qubit and bus as well as the entanglement sudden death and birth can be controlled by the time-dependent electromagnetic field
We consider a SQUID ring inductively coupled to an electromagnetic field mode, both treated quantum ...
A key step on the road map to solid-state quantum information processing (and to a deeper understand...
We consider a SQUID ring inductively coupled to an electromagnetic field mode, both treated quantum ...
We investigate the entanglement dynamics of a quantum system consisting of two-level atoms interact...
This paper considers the behavior of a model persistent current qubit in the presence of a time-depe...
Entanglement can exist not only in the microscopic system (e.g., atom, photon, and ion trap) but als...
We study the manipulation of quantum entanglement by periodic external fields. As an entanglement me...
We investigate the entanglement dynamics of two interacting qubits in a common vacuum environment. T...
This thesis is a theoretical study of entanglement dynamics and its control of qubit-qubit and qubit...
We analyze the dynamics of entanglement between two qubits which interact through collective and loc...
In the article, we investigate entanglement dynamics defined by time-dependent linear generators. We...
Abstract Quantum technologies able to manipulating single quantum systems, are presently developing....
We analyze the dynamics of entanglement between two qubits which interact through collective and loc...
We study the manipulation of quantum entanglement by periodic external fields. As an entanglement me...
A key step on the road map to solid-state quantum information processing (and to a deeper understand...
We consider a SQUID ring inductively coupled to an electromagnetic field mode, both treated quantum ...
A key step on the road map to solid-state quantum information processing (and to a deeper understand...
We consider a SQUID ring inductively coupled to an electromagnetic field mode, both treated quantum ...
We investigate the entanglement dynamics of a quantum system consisting of two-level atoms interact...
This paper considers the behavior of a model persistent current qubit in the presence of a time-depe...
Entanglement can exist not only in the microscopic system (e.g., atom, photon, and ion trap) but als...
We study the manipulation of quantum entanglement by periodic external fields. As an entanglement me...
We investigate the entanglement dynamics of two interacting qubits in a common vacuum environment. T...
This thesis is a theoretical study of entanglement dynamics and its control of qubit-qubit and qubit...
We analyze the dynamics of entanglement between two qubits which interact through collective and loc...
In the article, we investigate entanglement dynamics defined by time-dependent linear generators. We...
Abstract Quantum technologies able to manipulating single quantum systems, are presently developing....
We analyze the dynamics of entanglement between two qubits which interact through collective and loc...
We study the manipulation of quantum entanglement by periodic external fields. As an entanglement me...
A key step on the road map to solid-state quantum information processing (and to a deeper understand...
We consider a SQUID ring inductively coupled to an electromagnetic field mode, both treated quantum ...
A key step on the road map to solid-state quantum information processing (and to a deeper understand...
We consider a SQUID ring inductively coupled to an electromagnetic field mode, both treated quantum ...