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Quantum Channels Communication Theory
Minimum-cost quantum measurements for quantum information
arXiv
Authors: Petros Wallden, Vedran Dunjko, Erika Andersson
Year
2013
Paper ID
2411
Status
Preprint
Abstract Read
~2 min
Abstract Words
172
Citations
N/A
Abstract
Knowing about optimal quantum measurements is important for many applications in quantum information and quantum communication. However, deriving optimal quantum measurements is often difficult. We present a collection of results for minimum-cost quantum measurements, and give examples of how they can be used. Among other results, we show that a minimum-cost measurement for a set of given pure states is formally equivalent to a minimum-error measurement for mixed states of those same pure states. For pure symmetric states it turns out that for a certain class of cost matrices, the minimum-cost measurement is the square-root measurement. That is, the optimal minimum-cost measurement is in this case the same as the minimum-error measurement. Finally, we consider sequences of individual "local" systems, and examine when the global minimum-cost measurement is a sequence of optimal local measurements. We also consider an example where the global minimum-cost measurement is, perhaps counter-intuitively, not a sequence of local measurements, and discuss how this is related to related to the Pusey-Barrett-Rudolph argument for the nature of the wave function.
Why This Paper Matters
- This paper contributes to the Quantum Channels & Communication Theory research area in the Quantum Articles archive.
- It adds a 2013 reference point for readers tracking recent quantum research.
- Knowing about optimal quantum measurements is important for many applications in quantum information and quantum communication.
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