The cloning of conjugate continuous quantum variables is analyzed based on the concept of Gaussian cloning machines, i.e. transformations that yield copies that are Gaussian mixtures centered on the state to be copied. The optimality of Gaussian cloning machines that transform N identical input states into M output states is investigated, and bounds on the fidelity of the process are derived via a connection with quantum estimation theory. In particular, the optimal N-to-[Formula Presented] cloning fidelity for coherent states is found to be equal to [Formula Presented] © 2000 The American Physical Society.SCOPUS: ar.jinfo:eu-repo/semantics/publishe
The cloning of quantum variables with continuous spectra is investigated. We define a Gaussian 1-to-...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
An optimal universal cloning transformation is derived that produces M copies of an unknown qubit fr...
The cloning of continuous quantum variables is analyzed based on the concept of Gaussian cloning mac...
A quantum cloning machine is introduced that yields M identical optimal clones from N replicas of a ...
We study quantum cloning machines (QCM) that act on an unknown N-level quantum state and make M copi...
Cloning machines, that is, transformations that achieve the best approximate copying of a quantum st...
In this project, quantum cloning machines are analyzed that take in N quantum systems in the same un...
We consider the optimal cloning of quantum coherent states with single-clone and joint fidelity as f...
The standard cloning limits for finite width Gaussian distributions of coherent states were describe...
We derive optimal cloning limits for finite Gaussian distributions of coherent states, and describe ...
We derive a tight upper bound for the fidelity of a universal N → M qubit cloner, valid for any M ≥ ...
In this chapter we present a scheme for optimal Gaussian cloning of optical coherent states. Its opt...
We derive a tight upper bound for the fidelity of a universal N to M qubit cloner, valid for any M \...
In this chapter we present a scheme for optimal Gaussian cloning of optical coherent states. Its opt...
The cloning of quantum variables with continuous spectra is investigated. We define a Gaussian 1-to-...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
An optimal universal cloning transformation is derived that produces M copies of an unknown qubit fr...
The cloning of continuous quantum variables is analyzed based on the concept of Gaussian cloning mac...
A quantum cloning machine is introduced that yields M identical optimal clones from N replicas of a ...
We study quantum cloning machines (QCM) that act on an unknown N-level quantum state and make M copi...
Cloning machines, that is, transformations that achieve the best approximate copying of a quantum st...
In this project, quantum cloning machines are analyzed that take in N quantum systems in the same un...
We consider the optimal cloning of quantum coherent states with single-clone and joint fidelity as f...
The standard cloning limits for finite width Gaussian distributions of coherent states were describe...
We derive optimal cloning limits for finite Gaussian distributions of coherent states, and describe ...
We derive a tight upper bound for the fidelity of a universal N → M qubit cloner, valid for any M ≥ ...
In this chapter we present a scheme for optimal Gaussian cloning of optical coherent states. Its opt...
We derive a tight upper bound for the fidelity of a universal N to M qubit cloner, valid for any M \...
In this chapter we present a scheme for optimal Gaussian cloning of optical coherent states. Its opt...
The cloning of quantum variables with continuous spectra is investigated. We define a Gaussian 1-to-...
The impossibility of perfectly copying (or cloning) an unknown quantum state is one of the basic rul...
An optimal universal cloning transformation is derived that produces M copies of an unknown qubit fr...