Optimizing Quantum Models of Classical Channels: The reverse Holevo problem
September 23, 2017 Β· Declared Dead Β· π Journal of statistical physics
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Authors
S. Loomis, J. R. Mahoney, C. Aghamohammadi, J. P. Crutchfield
arXiv ID
1709.08101
Category
quant-ph: Quantum Computing
Cross-listed
cond-mat.stat-mech,
cs.IT,
stat.ML
Citations
1
Venue
Journal of statistical physics
Last Checked
5 months ago
Abstract
Given a classical channel---a stochastic map from inputs to outputs---the input can often be transformed to an intermediate variable that is informationally smaller than the input. The new channel accurately simulates the original but at a smaller transmission rate. Here, we examine this procedure when the intermediate variable is a quantum state. We determine when and how well quantum simulations of classical channels may improve upon the minimal rates of classical simulation. This inverts Holevo's original question of quantifying the capacity of quantum channels with classical resources. We also show that this problem is equivalent to another, involving the local generation of a distribution from common entanglement.
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