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- W2965136483 abstract "The strong connection between correlations and quantum thermodynamics raises a natural question about the preparation of correlated quantum states from two copies of a thermal qubit. In this work we study the specific forms of allowed and forbidden bipartite correlations. As a consequence, we extend the result to Separable (SEP) but not Absolutely Separable (AbSEP) class of product states. Preparation of a general form of entanglement from arbitrary thermal qubits is studied and as an application we propose a strategy to establish sustained entanglement between two distant parties. The threshold temperature to produce entanglement from two copies of a thermal qubit has also been discussed from the resource theoretic perspective, which ensures that the bound on the temperature can be superseded with the help of a resource state. A dimension dependent upper-bound on the temperature is derived, below which two copies of any d-dimensional thermal state can be entangled in 2xd dimension." @default.
- W2965136483 created "2019-08-13" @default.
- W2965136483 creator A5031479097 @default.
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- W2965136483 date "2019-07-30" @default.
- W2965136483 modified "2023-09-27" @default.
- W2965136483 title "Allowed and forbidden bipartite correlations from thermal states" @default.
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- W2965136483 doi "https://doi.org/10.1103/physreve.100.012147" @default.
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