Title of article
Complementarity in quantum systems
Author/Authors
Petz، نويسنده , , Dénes، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
16
From page
209
To page
224
Abstract
Reduction of a state of a quantum system to a subsystem gives partial quantum information about the true state of the total system. Two subalgebras A1 and A2 of B(H) are called complementary if the traceless subspaces of A1 and A2 are orthogonal (with respect to the Hilbert Schmidt inner product). When both subalgebras are maximal Abelian, then the concept reduces to complementary observables or mutually unbiased bases. In the paper several characterizations of complementary subalgebras are given in the general case and several examples are presented. For a 4-level quantum system, the structure of complementary subalgebras can be described very well, the Cartan decomposition of unitaries plays a role. It turns out that a measurement corresponding to the Bell basis is complementary to any local measurement of the two-qubit system.
Keywords
entropic uncertainty relation , Cartan decomposition , mutually unbiased basis , commuting squares , Complementarity , Bell states , CAR algebra
Journal title
Reports on Mathematical Physics
Serial Year
2007
Journal title
Reports on Mathematical Physics
Record number
1585789
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