2005
DOI: 10.1007/s11080-005-5729-8
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Tensor Product Decomposition, Entanglement, and Bogoliubov Transformations for Two Fermion System

Abstract: We consider the two-fermion system whose states are subjected to the superselection rule forbidding the superposition of states with fermionic and bosonic statistics. This implies that separable states are described only by diagonal density matrices. Moreover, we find the explicit formula for the entanglement of formation, which in this case cannot be calculated properly using Wootters's concurrence. We also discuss the problem of the choice of tensor product decomposition in a system of two fermions with the … Show more

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Cited by 3 publications
(4 citation statements)
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“…Fermions are also peculiar because they obey a parity superselection rule [208,209,210,211,212,213,214,215,216,217] that prevents the superposition of a bosonic compound and a fermionic system. These properties affects entanglement theory and its applications in quantum information [218,219,220,221,222,223,224,225,226].…”
Section: Mode-partitioningmentioning
confidence: 99%
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“…Fermions are also peculiar because they obey a parity superselection rule [208,209,210,211,212,213,214,215,216,217] that prevents the superposition of a bosonic compound and a fermionic system. These properties affects entanglement theory and its applications in quantum information [218,219,220,221,222,223,224,225,226].…”
Section: Mode-partitioningmentioning
confidence: 99%
“…Indeed, unlike identical particles, orthogonal modes can always be individually addressed in experiments [39,40,41]. Several fundamental properties of entanglement-V have been studied [71,120,227,176,177,219,220,228,221,222,151,223,224,229,230,231,154,232,233,234,235,226,203,236,237,238], as well as its experimental detection [239,240,241,242,243,244,245,246,247] and the possibility of practically manipulating it [248,249,250,251,252,253,254,255,256,257,…”
Section: Mode-partitioningmentioning
confidence: 99%
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“…We conclude this subsection with some comments on the related literature. The Hamiltonian (175) with ν 12 = ν 34 = ν has been studied for fermion systems in [48,50,52,[154][155][156][157][158], while in the references [159][160][161] the somewhat more general situation where not necessarily ν 12 = ν 34 is being considered. Particular versions of the general Hamiltonian (157) have been studied in [154,155,162].…”
Section: Diagonalizing Two-fermion Hamiltoniansmentioning
confidence: 99%