Scinovex
article Open AccessTop 1% cited

Entanglement of Formation of an Arbitrary State of Two Qubits

Physical Review Letters · 1998 · Vol. 80(10) · pp. 2245–2248
William K. Wootters

Abstract

The entanglement of a pure state of a pair of quantum systems is defined as the entropy of either member of the pair. The entanglement of formation of a mixed state $\ensuremath{\rho}$ is the minimum average entanglement of an ensemble of pure states that represents \ensuremath{\rho}. An earlier paper conjectured an explicit formula for the entanglement of formation of a pair of binary quantum objects (qubits) as a function of their density matrix, and proved the formula for special states. The present paper extends the proof to arbitrary states of this system and shows how to construct entanglement-minimizing decompositions.

Quantum Mechanics and ApplicationsQuantum Information and CryptographyQuantum Computing Algorithms and ArchitectureQuantum entanglementW stateQuantum mechanicsPhysicsSquashed entanglementMultipartite entanglementQubitCluster stateDensity matrixState (computer science)
Citations
8,065
FWCI
32.90
field-weighted impact
References
21
Percentile
100%
vs. same field & year
Citations per year
Cited by
Measurement of qubits
Physical Review A · 2001 · 2,100 citations
Volume of the set of separable states
Physical Review A · 1998 · 1,383 citations
Computable measure of entanglement
Physical Review A · 2002 · 4,805 citations
Distributed entanglement
Physical Review A · 2000 · 2,568 citations
Induced measures in the space of mixed quantum states
Journal of Physics A Mathematical and General · 2001 · 386 citations
Entanglement in a simple quantum phase transition
Physical Review A · 2002 · 1,435 citations
References
Concentrating partial entanglement by local operations
Physical Review A · 1996 · 3,057 citations
Mixed-state entanglement and quantum error correction
Physical Review A · 1996 · 5,212 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Entanglement of Formation of an Arbitrary State of Two Qubits · Scinovex