Biorthogonal quantum mechanics 论文

2013Journal of Physics A Mathematical and Theoretical引用 469
Quantum Mechanics and ApplicationsQuantum and Classical ElectrodynamicsQuantum Information and Cryptography

详细信息

发表期刊/会议
Journal of Physics A Mathematical and Theoretical
发表日期
2013-12-24
发表年份
2013

关键词

Quantum Mechanics and ApplicationsQuantum and Classical ElectrodynamicsQuantum Information and Cryptography

摘要

The Hermiticity condition in quantum mechanics required for the characterization of (a) physical observables and (b) generators of unitary motions can be relaxed into a wider class of operators whose eigenvalues are real and whose eigenstates are complete. In this case, the orthogonality of eigenstates is replaced by the notion of biorthogonality that defines the relation between the Hilbert space of states and its dual space. The resulting quantum theory, which might appropriately be called 'biorthogonal quantum mechanics', is developed here in some detail in the case for which the Hilbert-space dimensionality is finite. Specifically, characterizations of probability assignment rules, observable properties, pure and mixed states, spin particles, measurements, combined systems and entanglements, perturbations, and dynamical aspects of the theory are developed. The paper concludes with a brief discussion on infinite-dimensional systems. © 2014 IOP Publishing Ltd.

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