Transporting quantum information is an important prerequisite for quantum computers. We study how this can be done in Heisenberg-coupled spin networks using adiabatic control over the coupling strengths. We find that qudits can be transferred and entangled pairs can be created between distant sites of bipartite graphs with a certain balance between the maximum spin of both parts, extending previous results that were limited to linear chains. The transfer fidelity in a small star-shaped network is numerically analysed, and possible experimental implementations are discussed
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
We propose a method for Hamiltonian engineering that requires no local control but only relies on co...
In this paper we propose a superadiabatic protocol where quantum state transfer can be achieved with...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
We propose a quantum-state transfer protocol in a spin chain that requires only the control of the s...
Spin chains have been proposed as wires to transport information between distributed registers in a ...
High-fidelity quantum computation and quantum state transfer are possible in short spin chains. We e...
We propose a class of qubit networks that admit perfect state transfer of any two-dimensional quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
We treat the transmission of a Qubit state along Spin Networks, utilizing only Hamiltonian evolution...
International audienceWe consider a spin network resembling an $\alpha$-helix structure and study qu...
Adiabatic methods are potentially important for quantum information protocols because of their robus...
Networks of spins, or spintronic networks, are given an Information Transfer Fidelity (ITF) derived ...
This paper investigates numerically a phenomenon which can be used to transport a single q-bit down ...
The transfer of an unknown quantum state, from a sender to a receiver, is one of the main requiremen...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
We propose a method for Hamiltonian engineering that requires no local control but only relies on co...
In this paper we propose a superadiabatic protocol where quantum state transfer can be achieved with...
Transporting quantum information is an important prerequisite for quantum computers. We study how th...
We propose a quantum-state transfer protocol in a spin chain that requires only the control of the s...
Spin chains have been proposed as wires to transport information between distributed registers in a ...
High-fidelity quantum computation and quantum state transfer are possible in short spin chains. We e...
We propose a class of qubit networks that admit perfect state transfer of any two-dimensional quantu...
In this paper, we provide a simple strategy to optimize the performances of a spin chain as a quantu...
We treat the transmission of a Qubit state along Spin Networks, utilizing only Hamiltonian evolution...
International audienceWe consider a spin network resembling an $\alpha$-helix structure and study qu...
Adiabatic methods are potentially important for quantum information protocols because of their robus...
Networks of spins, or spintronic networks, are given an Information Transfer Fidelity (ITF) derived ...
This paper investigates numerically a phenomenon which can be used to transport a single q-bit down ...
The transfer of an unknown quantum state, from a sender to a receiver, is one of the main requiremen...
We investigate the fidelity of the quantum state transfer (QST) of two qubits by means of an arbitra...
We propose a method for Hamiltonian engineering that requires no local control but only relies on co...
In this paper we propose a superadiabatic protocol where quantum state transfer can be achieved with...