Javascript must be enabled to continue!
Universal Global Cloning of Continuous Variables Entanglement
View through CrossRef
AbstractIt is impossible to perfectly duplicate an unknown entangled state while preserving inseparability, which is known as the entanglement no‐cloning principle. Nevertheless, approximate cloning of entanglement is allowed by quantum mechanics. A universal entanglement cloning machine (UECM) duplicates an entangled state such that the quality of its entanglement replicas does not depend on the input. To duplicate entanglement shared between two parties, 1‐to‐N universal local entanglement cloning machine (ULECM) has already been proposed (Weedbrook, et al., Phys. Rev. A, 77, 052313 (2008)), which employs two local UECMs to copy each party of the entangled state. However, the ULECM can never preserve the inseparability in its replicas. Here, a 1‐to‐N universal global entanglement cloning machine (UGECM) that takes the entire entangled state as the input and then globally clone it to produce replicas is proposed. It is demonstrated that the UGECM outperforms the ULECM both in terms of the fidelity and the inseparability preservation. In addition, the UGECM is of more simple and easy structure, compared with the UGECM. Such a UGECM may find its new applications in quantum entanglement broadcasting.
Title: Universal Global Cloning of Continuous Variables Entanglement
Description:
AbstractIt is impossible to perfectly duplicate an unknown entangled state while preserving inseparability, which is known as the entanglement no‐cloning principle.
Nevertheless, approximate cloning of entanglement is allowed by quantum mechanics.
A universal entanglement cloning machine (UECM) duplicates an entangled state such that the quality of its entanglement replicas does not depend on the input.
To duplicate entanglement shared between two parties, 1‐to‐N universal local entanglement cloning machine (ULECM) has already been proposed (Weedbrook, et al.
, Phys.
Rev.
A, 77, 052313 (2008)), which employs two local UECMs to copy each party of the entangled state.
However, the ULECM can never preserve the inseparability in its replicas.
Here, a 1‐to‐N universal global entanglement cloning machine (UGECM) that takes the entire entangled state as the input and then globally clone it to produce replicas is proposed.
It is demonstrated that the UGECM outperforms the ULECM both in terms of the fidelity and the inseparability preservation.
In addition, the UGECM is of more simple and easy structure, compared with the UGECM.
Such a UGECM may find its new applications in quantum entanglement broadcasting.
Related Results
Mark–recapture cloning: a straightforward and cost‐effective cloning method for population genetics of single‐copy nuclear DNA sequences in diploids
Mark–recapture cloning: a straightforward and cost‐effective cloning method for population genetics of single‐copy nuclear DNA sequences in diploids
AbstractWe describe a simple protocol to reduce the number of cloning reactions of nuclear DNA sequences in population genetic studies of diploid organisms. Cloning is a necessary ...
Some Remarks on the Entanglement Number
Some Remarks on the Entanglement Number
Gudder, in a recent paper, defined a candidate entanglement measure which is called the entanglement number. The entanglement number is first defined on pure states and then it ext...
Entanglement-related features of hydrogenic systems and other systems described by bound states of two interacting particles
Entanglement-related features of hydrogenic systems and other systems described by bound states of two interacting particles
This paper delves into entanglement-related features of one-dimensional and three-dimensional systems comprising two particles interacting through an attractive potential, such as ...
Black holes entangled by radiation
Black holes entangled by radiation
Abstract
We construct three models to describe the scenario where two eternal black holes are separated by a flat space, and can eventually be entangled by exc...
Purification of Logic-Qubit Entanglement
Purification of Logic-Qubit Entanglement
AbstractRecently, the logic-qubit entanglement shows its potential application in future quantum communication and quantum network. However, the entanglement will suffer from the n...
Purification of the residual entanglement
Purification of the residual entanglement
Entanglement purification is an indispensable ingredient in extended quantum communication networks and usually determines the efficiency and communication rate of quantum communic...
Cloning and Expression Vectors
Cloning and Expression Vectors
Cloning and expression vectors are essential tools in molecular biology that
enable researchers to manipulate and study genes and proteins. Cloning vectors are
DNA molecules that c...
Entanglement Rényi entropies from ballistic fluctuation theory: The free fermionic case
Entanglement Rényi entropies from ballistic fluctuation theory: The free fermionic case
The large-scale behaviour of entanglement entropy in finite-density states, in and out of equilibrium, can be understood using the physical picture of particle pairs. However, the ...

