Published May 21, 2014 | Version v1
Journal article

The capacity of black holes to transmit quantum information

  • 1. Department of Astronomy and Physics, Saint Mary's University,Halifax, Nova Scotia, B3H 3C3 (Canada)
  • 2. Department of Physics and Astronomy, Michigan State University,East Lansing, MI 48824 (United States)

Description

We study the properties of the quantum information transmission channel that emerges from the quantum dynamics of particles interacting with a black hole horizon. We calculate the quantum channel capacity in two limiting cases where a single-letter capacity is known to exist: the limit of perfectly reflecting and perfectly absorbing black holes. We find that the perfectly reflecting black hole channel is closely related to the Unruh channel and that its capacity is non-vanishing, allowing for the perfect reconstruction of quantum information outside of the black hole horizon. We also find that the complementary channel (transmitting entanglement behind the horizon) is entanglement-breaking in this case, with vanishing capacity. We then calculate the quantum capacity of the black hole channel in the limit of a perfectly absorbing black hole and find that this capacity vanishes, while the capacity of the complementary channel is non-vanishing instead. Rather than inviting a new crisis for quantum physics, this finding instead is in accordance with the quantum no-cloning theorem, because it guarantees that there are no space-like surfaces that contain both the sender's quantum state and the receiver's reconstructed quantum state

Availability note (English)

Available from http://dx.doi.org/10.1007/JHEP05(2014)095; Available from http://repo.scoap3.org/record/2698

Additional details

Publishing Information

Journal Title
Journal of High Energy Physics (Online)
Journal Volume
2014
Journal Issue
05
Journal Page Range
p. 95
ISSN
1029-8479

Optional Information

Copyright
Copyright (c) OPEN ACCESS, © The Authors
Notes
PUBLISHER-ID: JHEP05(2014)095; OAI: oai:repo.scoap3.org:2698
Funding organization
SCOAP3, CERN, Geneva (Switzerland)