Efficient quantum-state transfer is achieved in a uniformly coupled spin-1/2 chain, with open boundaries, by application of local magnetic fields on the second and last-but-one spins, respectively. These effective barriers induce the appearance of two eigenstates, bilocalized at the edges of the chain, which allow a high-quality transfer also at relatively long distances. The same mechanism may be used to send an entire e-bit (e.g., an entangled qubit pair) from one to the other end of the chain. DOI: 10.1103/PhysRevA.87.04231
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
Efficient quantum-state transfer is achieved in a uniformly coupled spin-1/2 chain, with open bounda...
Efficient quantum-state transfer is achieved in a uniformly coupled spin-1/2 chain, with open bounda...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
The transfer of an unknown quantum state, from a sender to a receiver, is one of the main requiremen...
The transfer of an unknown quantum state, from a sender to a receiver, is one of the main requiremen...
In recent years, the interest in quantum communication channels has experienced a rapid increase, al...
Two different models are presented that allow for efficiently performing routing of a quantum sta...
Two different models are presented that allow for efficiently performing routing of a quantum st...
Heisenberg-type spin models in the limit of a low number of excitations are useful tools to study ba...
Two different models are presented that allow for efficiently performing routing of a quantum state....
We studied the quantum state transfer in randomly coupled spin chains. By using local memories stori...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
Efficient quantum-state transfer is achieved in a uniformly coupled spin-1/2 chain, with open bounda...
Efficient quantum-state transfer is achieved in a uniformly coupled spin-1/2 chain, with open bounda...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
The transfer of an unknown quantum state, from a sender to a receiver, is one of the main requiremen...
The transfer of an unknown quantum state, from a sender to a receiver, is one of the main requiremen...
In recent years, the interest in quantum communication channels has experienced a rapid increase, al...
Two different models are presented that allow for efficiently performing routing of a quantum sta...
Two different models are presented that allow for efficiently performing routing of a quantum st...
Heisenberg-type spin models in the limit of a low number of excitations are useful tools to study ba...
Two different models are presented that allow for efficiently performing routing of a quantum state....
We studied the quantum state transfer in randomly coupled spin chains. By using local memories stori...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...