We present the results of a linear optics photonic implementation of a quantum circuit that simulates a phase covariant cloner, using two different degrees of freedom of a single photon. We experimentally simulate the action of two mirrored 1 → 2 cloners, each of them biasing the cloned states into opposite regions of the Bloch sphere. We show that by applying a random sequence of these two cloners, an eavesdropper can mitigate the amount of noise added to the original input state and therefore, prepare clones with no bias, but with the same individual fidelity, masking its presence in a quantum key distribution protocol. Input polarization qubit states are cloned into path qubit states of the same photon, which is identified as a potential...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
The optimal phase-covariant quantum cloning machine (PQCM) broadcasts the information associated to ...
The cloning of quantum variables with continuous spectra is investigated. We define a Gaussian 1-to-...
The experimental realization of optimal symmetric phase-covariant 1->2 cloning of qubit states is pr...
We present the experimental realization of optimal symmetric and asymmetric phase-covariant 1->2 clo...
The Variational Quantum Cloning algorithm uses machine learning to obtain through optimization a cir...
We investigate the performance of a selective cloning machine based on linear optical elements and G...
While exact cloning of an unknown quantum state is prohibited by the linearity of quantum mechanics,...
While exact cloning of an unknown quantum state is prohibited by the linearity of quantum mechanics,...
We describe a nuclear magnetic resonance (NMR) experiment which implements an efficient one-to-two q...
In this chapter we present a scheme for optimal Gaussian cloning of optical coherent states. Its opt...
We present a probabilistic cloning scheme operating independently of any phase reference. The scheme...
We analyze in details a scheme for cloning of Gaussian states based on linear optical components and...
We investigate the asymmetric Gaussian cloning of coherent states which produces M copies from N inp...
The information encoded in the polarization of a single photon can be transferred to a remote locati...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
The optimal phase-covariant quantum cloning machine (PQCM) broadcasts the information associated to ...
The cloning of quantum variables with continuous spectra is investigated. We define a Gaussian 1-to-...
The experimental realization of optimal symmetric phase-covariant 1->2 cloning of qubit states is pr...
We present the experimental realization of optimal symmetric and asymmetric phase-covariant 1->2 clo...
The Variational Quantum Cloning algorithm uses machine learning to obtain through optimization a cir...
We investigate the performance of a selective cloning machine based on linear optical elements and G...
While exact cloning of an unknown quantum state is prohibited by the linearity of quantum mechanics,...
While exact cloning of an unknown quantum state is prohibited by the linearity of quantum mechanics,...
We describe a nuclear magnetic resonance (NMR) experiment which implements an efficient one-to-two q...
In this chapter we present a scheme for optimal Gaussian cloning of optical coherent states. Its opt...
We present a probabilistic cloning scheme operating independently of any phase reference. The scheme...
We analyze in details a scheme for cloning of Gaussian states based on linear optical components and...
We investigate the asymmetric Gaussian cloning of coherent states which produces M copies from N inp...
The information encoded in the polarization of a single photon can be transferred to a remote locati...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
The optimal phase-covariant quantum cloning machine (PQCM) broadcasts the information associated to ...
The cloning of quantum variables with continuous spectra is investigated. We define a Gaussian 1-to-...