Quantum Speed Limits in Open System Dynamics

A. del Campo, I. L. Egusquiza, M. B. Plenio, and S. F. Huelga
Phys. Rev. Lett. 110, 050403 – Published 30 January 2013
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Abstract

Bounds to the speed of evolution of a quantum system are of fundamental interest in quantum metrology, quantum chemical dynamics, and quantum computation. We derive a time-energy uncertainty relation for open quantum systems undergoing a general, completely positive, and trace preserving evolution which provides a bound to the quantum speed limit. When the evolution is of the Lindblad form, the bound is analogous to the Mandelstam-Tamm relation which applies in the unitary case, with the role of the Hamiltonian being played by the adjoint of the generator of the dynamical semigroup. The utility of the new bound is exemplified in different scenarios, ranging from the estimation of the passage time to the determination of precision limits for quantum metrology in the presence of dephasing noise.

  • Received 18 September 2012

DOI:https://doi.org/10.1103/PhysRevLett.110.050403

© 2013 American Physical Society

Authors & Affiliations

A. del Campo1,2, I. L. Egusquiza3, M. B. Plenio4,5, and S. F. Huelga4,5

  • 1Theoretical Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA
  • 2Center for Nonlinear Studies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA
  • 3Department of Theoretical Physics and History of Science, UPV-EHU, 48080 Bilbao, Spain
  • 4Institut für Theoretische Physik, Albert-Einstein Allee 11, Universität Ulm, D-89069 Ulm, Germany
  • 5Institut for Integrated Quantum Science and Technology, Albert-Einstein Allee 11, Universität Ulm, D-89069 Ulm, Germany

See Also

Quantum Speed Limit for Physical Processes

M. M. Taddei, B. M. Escher, L. Davidovich, and R. L. de Matos Filho
Phys. Rev. Lett. 110, 050402 (2013)

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Vol. 110, Iss. 5 — 1 February 2013

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