We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitrary spin- 1/2 network, on a lattice of any dimensionality. Under the assumptions that the network Hamiltonian preserves the magnetization and that a fully polarized initial state is taken for the lattice, we obtain a general formula for the average fidelity of the two qubits QST, linking it to the one- and two-particle transfer amplitudes of the spin excitations among the sites of the lattice. We then apply this formalism to a 1D spin chain with XX-Heisenberg type nearest-neighbour interactions adopting a protocol that is a generalization of the single qubit one proposed in Paganelli et al. [Phys. Rev. A 87, 062309 (2013)]. We find that a high...
We present a communication protocol for chains of permanently coupled qubits which achieves perfect ...
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...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
We study the transfer of an arbitrary two-qubit pure state with the spin-chain channels an...
We studied the quantum state transfer in randomly coupled spin chains. By using local memories stori...
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...
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...
Efficient quantum-state transfer is achieved in a uniformly coupled spin-1/2 chain, with open bounda...
We treat the transmission of a Qubit state along Spin Networks, utilizing only Hamiltonian evolution...
We propose and analyze a new approach for quantum state transfer between remote spin qubits. Specif...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
Two different models are presented that allow for efficiently performing routing of a quantum sta...
We present a communication protocol for chains of permanently coupled qubits which achieves perfect ...
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...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
We study the transfer of an arbitrary two-qubit pure state with the spin-chain channels an...
We studied the quantum state transfer in randomly coupled spin chains. By using local memories stori...
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...
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...
Efficient quantum-state transfer is achieved in a uniformly coupled spin-1/2 chain, with open bounda...
We treat the transmission of a Qubit state along Spin Networks, utilizing only Hamiltonian evolution...
We propose and analyze a new approach for quantum state transfer between remote spin qubits. Specif...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
Two different models are presented that allow for efficiently performing routing of a quantum sta...
We present a communication protocol for chains of permanently coupled qubits which achieves perfect ...
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...