The state space structure for a composite quantum system is postulated among several mathematically consistent possibilities that are compatible with local quantum description. For instance, unentangled Gleason's theorem allows a state space that includes density operators as a proper subset among all possible composite states. However, bipartite correlations obtained in Bell type experiments from this broader state space are in-fact quantum simulable, and hence such spacelike correlations are no good to make distinction among different compositions. In this work we analyze communication utilities of these different composite models and show that they can lead to distinct utilities in a simple communication game involving two players. Our a...
The existence of correlations between the parts of a quantum system on the one hand, and entanglemen...
Bell's theorem states that Local Hidden Variables (LHVs) cannot fully explain the statistics of meas...
Quantum information theory is built upon the realisation that quantum resources like coherence and e...
MIP*=RE implies that C_{qa} (the closure of the set of tensor product correlations) and C_{qc} (the ...
Some forms of classical simulations of quantum type probabilities and correlations are capable of vi...
It is known that the global state of a composite quantum system can be com-pletely determined by spe...
We establish bounds on quantum correlations in many-body systems. They reveal what sort of informati...
Composite quantum systems can be in generic states characterized not only by entanglement but also b...
We discuss a scenario of bipartite steering with local subsystems of the parties modeled by certain ...
It is known that the global state of a composite quantum system can be com-pletely determined by spe...
Quantum correlations and non-projective measurements underlie a plethora of information-theoretic ta...
It is known that the global state of a composite quantum system can be completely determined by spec...
We study the growth of entanglement between two adjacent regions in a tripartite, one-dimensional ma...
Assume Alice and Bob share some bipartite d-dimensional quantum state. A well-known result in quantu...
Assume Alice and Bob share some bipartite d-dimensional quantum state. A well-known result in quantu...
The existence of correlations between the parts of a quantum system on the one hand, and entanglemen...
Bell's theorem states that Local Hidden Variables (LHVs) cannot fully explain the statistics of meas...
Quantum information theory is built upon the realisation that quantum resources like coherence and e...
MIP*=RE implies that C_{qa} (the closure of the set of tensor product correlations) and C_{qc} (the ...
Some forms of classical simulations of quantum type probabilities and correlations are capable of vi...
It is known that the global state of a composite quantum system can be com-pletely determined by spe...
We establish bounds on quantum correlations in many-body systems. They reveal what sort of informati...
Composite quantum systems can be in generic states characterized not only by entanglement but also b...
We discuss a scenario of bipartite steering with local subsystems of the parties modeled by certain ...
It is known that the global state of a composite quantum system can be com-pletely determined by spe...
Quantum correlations and non-projective measurements underlie a plethora of information-theoretic ta...
It is known that the global state of a composite quantum system can be completely determined by spec...
We study the growth of entanglement between two adjacent regions in a tripartite, one-dimensional ma...
Assume Alice and Bob share some bipartite d-dimensional quantum state. A well-known result in quantu...
Assume Alice and Bob share some bipartite d-dimensional quantum state. A well-known result in quantu...
The existence of correlations between the parts of a quantum system on the one hand, and entanglemen...
Bell's theorem states that Local Hidden Variables (LHVs) cannot fully explain the statistics of meas...
Quantum information theory is built upon the realisation that quantum resources like coherence and e...