Quantum information distributors: Quantum network for symmetric and asymmetric cloning in arbitrary dimension and continuous limit
arXiv:quant-ph/0009076 · doi:10.1103/PhysRevA.63.052313
Abstract
We show that for any Hilbert-space dimension, the optimal universal quantum cloner can be constructed from essentially the same quantum circuit, i.e., we find a universal design for universal cloners. In the case of infinite dimensions (which includes continuous variable quantum systems) the universal cloner reduces to an essentially classical device. More generally, we construct a universal quantum circuit for distributing qudits in any dimension which acts covariantly under generalized displacements and momentum kicks. The behavior of this covariant distributor is controlled by its initial state. We show that suitable choices for this initial state yield both universal cloners and optimized cloners for limited alphabets of states whose states are related by generalized phase-space displacements.
10 revtex pages, no figures
References in corpus (6)
Cited by in corpus (56)
- Quantum information with continuous variables
- Universal state inversion and concurrence in arbitrary dimensions
- Quantum cloning
- Continuous variable quantum key distribution in non-Markovian channels
- Optimal cloning of coherent states with a linear amplifier and beam splitters
- Three-mode entanglement by interlinked nonlinear interactions in optical media
- Quantum Cloning Machines and the Applications
- Unconditional quantum cloning of coherent states with linear optics
- Unconditionally Secure Bit Commitment with Flying Qudits
- Probabilistic implementation of universal quantum processors
- Phase gate of one superconducting qubit simultaneously controlling n qubits in a cavity
- Quantum limits on probabilistic amplifiers
- Quantum searches on highly symmetric graphs
- Experimental Realization of Asymmetric Phase-Covariant Quantum Cloning
- Quantum and classical correlations of intense beams of light via joint photodetection
- Optimal probabilistic cloning and purification of quantum states
- Quantum Key Distribution using Multilevel Encoding: Security Analysis
- Decoherence effects on the quantum spin channels
- Surpassing the no-cloning limit with a heralded hybrid linear amplifier for coherent states
- Multiqubit tunable phase gate of one qubit simultaneously controlling qubits in a cavity
- Quantum Walks
- Cloning of Gaussian states by linear optics
- Implementation of quantum maps by programmable quantum processors
- Quantum partial teleportation as optimal cloning at a distance
- Quantum cloning of orthogonal qubits
- Multimode entanglement and telecloning in a noisy environment
- Witnessing incompatibility of quantum channels
- Realization of POVMs using measurement-assisted programmable quantum processors
- A No-summoning theorem in Relativistic Quantum Theory
- Single-step implementation of a hybrid controlled-NOT gate with one superconducting qubit simultaneously controlling multiple target cat-state qubits
- The su(2)_α Hahn oscillator and a discrete Hahn-Fourier transform
- Circuit QED: single-step realization of a multiqubit controlled phase gate with one microwave photonic qubit simultaneously controlling microwave photonic qubits
- Improving performance of probabilistic programmable quantum processors
- Demonstration of reversible phase-insensitive optical amplifier
- Multiplex-controlled phase gate with qubits distributed in a multi-cavity system
- One-step implementation of a multi-target-qubit controlled-phase gate with photonic qubits encoded via eigenstates of the photon-number parity operator
- Novel cloning machine with supplementary information
- Distribution of quantum Fisher information in asymmetric cloning machines
- Region of fidelities for a 1 -> N universal qubit quantum cloner
- Group representation approach to 1 - N universal quantum cloning machines
- Equi-entangled bases in arbitrary dimensions
- Generalized measurements via programmable quantum processor
- Optimal copying of entangled two-qubit states
- Realization of quantum gates with multiple control qubits or multiple target qubits in a cavity
- Reversibility of continuous-variable quantum cloning
- Monogamy relation in multipartite continuous-variable quantum teleportation
- Quantum Machines
- Quantum Telecloning on NISQ Computers
- The measurement postulates of quantum mechanics are not redundant
- Universal covariant quantum cloning circuits for qubit entanglement manipulation
- Universal Asymmetric Quantum Cloning Revisited
- Asymmetric universal entangling machine
- A simple formulation of no-cloning and no-hiding that admits efficient and robust verification
- Quantum entanglement percolation under a realistic restriction
- Realizing an -target-qubit controlled phase gate in cavity QED: An approach without classical pulses
- One-step implementation of a multi-target-qubit controlled phase gate with cat-state qubits in circuit QED