It is shown that the order property of pure bipartite states under SLOCC (stochastic local operations and classical communications) changes radically when dimensionality shifts from finite to infinite. In contrast to finite dimensional systems where there is no pure incomparable state, the existence of infinitely many mutually SLOCC incomparable states is shown for infinite dimensional systems even under the bounded energy and finite information exchange condition. These results show that the effect of the infinite dimensionality of Hilbert space, the ``infinite workspace'' property, remains even in physically relevant infinite dimensional systems
We explore the question of using an entangled state as a universal resource for implementing quantum...
We explore the question of using an entangled state as a universal resource for implementing quantum...
Quantum entanglement plays a central role in quantum information processing. A main objective of the...
By introducing the concept of $\epsilon$-convertibility, we extend Nielsen's and Vidal's theorems to...
I show that two distant parties can transform a single copy of their pure entangled state to arbitra...
In support of a recent conjecture by Nielsen (1999), we prove that the phenomena of 'incomparable en...
We provide a systematic classification of multiparticle entanglement in terms of equivalence classes...
Understanding multipartite entanglement is vital, as it underpins a wide range of phenomena across ...
We provide a systematic classification of multiparticle entanglement in terms of equivalence classes...
We provide a systematic classification of multiparticle entanglement in terms of equivalence classes...
Ordering physical states is the key to quantifying some physical property of the states uniquely. Bi...
We establish a generalisation of the fundamental state convertibility theorem in quantum information...
Local operations assisted by classical communication (LOCC) constitute the free operations in entang...
Abstract Understanding multipartite entanglement is vital, as it underpins a wide range of phenomen...
We explore the question of using an entangled state as a universal resource for implementing quantum...
We explore the question of using an entangled state as a universal resource for implementing quantum...
We explore the question of using an entangled state as a universal resource for implementing quantum...
Quantum entanglement plays a central role in quantum information processing. A main objective of the...
By introducing the concept of $\epsilon$-convertibility, we extend Nielsen's and Vidal's theorems to...
I show that two distant parties can transform a single copy of their pure entangled state to arbitra...
In support of a recent conjecture by Nielsen (1999), we prove that the phenomena of 'incomparable en...
We provide a systematic classification of multiparticle entanglement in terms of equivalence classes...
Understanding multipartite entanglement is vital, as it underpins a wide range of phenomena across ...
We provide a systematic classification of multiparticle entanglement in terms of equivalence classes...
We provide a systematic classification of multiparticle entanglement in terms of equivalence classes...
Ordering physical states is the key to quantifying some physical property of the states uniquely. Bi...
We establish a generalisation of the fundamental state convertibility theorem in quantum information...
Local operations assisted by classical communication (LOCC) constitute the free operations in entang...
Abstract Understanding multipartite entanglement is vital, as it underpins a wide range of phenomen...
We explore the question of using an entangled state as a universal resource for implementing quantum...
We explore the question of using an entangled state as a universal resource for implementing quantum...
We explore the question of using an entangled state as a universal resource for implementing quantum...
Quantum entanglement plays a central role in quantum information processing. A main objective of the...