On the generalization of linear least mean squares estimation to quantum systems with non-commutative outputs

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Abstract

The purpose of this paper is to study the problem of generalizing the Belavkin-Kalman filter to the case where the classical measurement signal is replaced by a fully quantum non-commutative output signal. We formulate a least mean squares estimation problem that involves a non-commutative system as the filter processing the non-commutative output signal. We solve this estimation problem within the framework of non-commutative probability. Also, we find the necessary and sufficient conditions which make these non-commutative estimators physically realizable. These conditions are restrictive in practice.

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Amini, N. H., Miao, Z., Pan, Y., James, M. R., & Mabuchi, H. (2015). On the generalization of linear least mean squares estimation to quantum systems with non-commutative outputs. EPJ Quantum Technology, 2(1). https://doi.org/10.1140/epjqt/s40507-015-0028-y

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