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Phys. Rev. Lett. 77, 2851–2854 (1996)

Geometry of Quantum Statistical Inference

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Dorje C. Brody1 and Lane P. Hughston2
1Blackett Laboratory, Imperial College, South Kensington, London SW7 2BZ, United Kingdom
2Merrill Lynch International, 25 Ropemaker Street, London EC2Y 9LY, United Kingdom
2band King's College London, The Strand, London WC2R 2LS, United Kingdom

Received 13 May 1996; published in the issue dated 30 September 1996

An efficient geometric formulation of the problem of parameter estimation is developed, based on Hilbert space geometry. This theory, which allows for a transparent transition between classical and quantum statistical inference, is then applied to the analysis of exponential families of distributions (of relevance to statistical mechanics) and quantum mechanical evolutions. The extension to quantum theory is achieved by the introduction of a complex structure on the given real Hilbert space. We find a set of higher order corrections to the parameter estimation variance lower bound, which are potentially important in quantum mechanics, where these corrections appear as modifications to Heisenberg uncertainty relations for the determination of the parameter.

© 1996 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevLett.77.2851
DOI:
10.1103/PhysRevLett.77.2851
PACS:
02.40.Ky, 02.40.Ft, 02.50.-r, 03.65.-w