The universal optimal quantum cloning machine (UOQCM) and the universal NOT gate can be implemented contextually by modifying the quantum state teleportation network. We report the experimental realization of the probabilistic UOQCM with polarization encoded qubits. This is achieved by combining on a symmetric beam-splitter the input qubit with an ancilla in a fully mixed state
The impossibility of perfectly copying or cloning an unknown quantum state is one of the basic rule...
In classical computation, a 'bit' of information can be flipped (that is, changed in value from zero...
A simultaneous realization of the Universal Optimal Quantum Cloning Machine (UOQCM) and of the Unive...
We present a computational circuit which realizes contextually the Tele-UNOT gate and the universal ...
By a significant modification of the standard protocol of quantum state teleportation, two processes...
By a significant modification of the standard protocol of quantum state Teleportation two processes ...
Since manipulations of qubits are constrained by the quantum mechanical rules, several classical inf...
We present the first experimental demonstration of the ''optimal'' and ''universal'' quantum entangl...
Optimal quantum machines can be implemented by linear projective operations. In the present work a g...
We establish the best possible approximation to a perfect quantum cloning machine which produces two...
The optimal phase-covariant quantum cloning machine (PQCM) broadcasts the information associated to ...
A general multi-step N->M probabilistic optimal universal cloning protocol is presented together wit...
We establish the best possible approximation to a perfect quantum cloning machine that produces two ...
Optimal quantum cloning is the process of making one or more copies of an arbitrary unknown input qu...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
The impossibility of perfectly copying or cloning an unknown quantum state is one of the basic rule...
In classical computation, a 'bit' of information can be flipped (that is, changed in value from zero...
A simultaneous realization of the Universal Optimal Quantum Cloning Machine (UOQCM) and of the Unive...
We present a computational circuit which realizes contextually the Tele-UNOT gate and the universal ...
By a significant modification of the standard protocol of quantum state teleportation, two processes...
By a significant modification of the standard protocol of quantum state Teleportation two processes ...
Since manipulations of qubits are constrained by the quantum mechanical rules, several classical inf...
We present the first experimental demonstration of the ''optimal'' and ''universal'' quantum entangl...
Optimal quantum machines can be implemented by linear projective operations. In the present work a g...
We establish the best possible approximation to a perfect quantum cloning machine which produces two...
The optimal phase-covariant quantum cloning machine (PQCM) broadcasts the information associated to ...
A general multi-step N->M probabilistic optimal universal cloning protocol is presented together wit...
We establish the best possible approximation to a perfect quantum cloning machine that produces two ...
Optimal quantum cloning is the process of making one or more copies of an arbitrary unknown input qu...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
The impossibility of perfectly copying or cloning an unknown quantum state is one of the basic rule...
In classical computation, a 'bit' of information can be flipped (that is, changed in value from zero...
A simultaneous realization of the Universal Optimal Quantum Cloning Machine (UOQCM) and of the Unive...