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Convergence Rates for Quantum Evolution and Entropic Continuity Bounds in Infinite Dimensions
by
Datta, Nilanjana
, Becker, Simon
in
Banach spaces
/ Boltzmann transport equation
/ Brownian motion
/ Channels
/ Classical and Quantum Gravitation
/ Complex Systems
/ Constraints
/ Continuity
/ Diamonds
/ Energy spectra
/ Lipschitz condition
/ Mathematical and Computational Physics
/ Mathematical Physics
/ Norms
/ Physics
/ Physics and Astronomy
/ Quantum Physics
/ Relativity Theory
/ Speed limits
/ Theoretical
2020
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Convergence Rates for Quantum Evolution and Entropic Continuity Bounds in Infinite Dimensions
by
Datta, Nilanjana
, Becker, Simon
in
Banach spaces
/ Boltzmann transport equation
/ Brownian motion
/ Channels
/ Classical and Quantum Gravitation
/ Complex Systems
/ Constraints
/ Continuity
/ Diamonds
/ Energy spectra
/ Lipschitz condition
/ Mathematical and Computational Physics
/ Mathematical Physics
/ Norms
/ Physics
/ Physics and Astronomy
/ Quantum Physics
/ Relativity Theory
/ Speed limits
/ Theoretical
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Convergence Rates for Quantum Evolution and Entropic Continuity Bounds in Infinite Dimensions
by
Datta, Nilanjana
, Becker, Simon
in
Banach spaces
/ Boltzmann transport equation
/ Brownian motion
/ Channels
/ Classical and Quantum Gravitation
/ Complex Systems
/ Constraints
/ Continuity
/ Diamonds
/ Energy spectra
/ Lipschitz condition
/ Mathematical and Computational Physics
/ Mathematical Physics
/ Norms
/ Physics
/ Physics and Astronomy
/ Quantum Physics
/ Relativity Theory
/ Speed limits
/ Theoretical
2020
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Convergence Rates for Quantum Evolution and Entropic Continuity Bounds in Infinite Dimensions
Journal Article
Convergence Rates for Quantum Evolution and Entropic Continuity Bounds in Infinite Dimensions
2020
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Overview
By extending the concept of energy-constrained diamond norms, we obtain continuity bounds on the dynamics of both closed and open quantum systems in infinite dimensions, which are stronger than previously known bounds. We extensively discuss applications of our theory to quantum speed limits, attenuator and amplifier channels, the quantum Boltzmann equation, and quantum Brownian motion. Next, we obtain explicit log-Lipschitz continuity bounds for entropies of infinite-dimensional quantum systems, and classical capacities of infinite-dimensional quantum channels under energy-constraints. These bounds are determined by the high energy spectrum of the underlying Hamiltonian and can be evaluated using Weyl’s law.
Publisher
Springer Berlin Heidelberg,Springer Nature B.V
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