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Środowiskowe Seminarium z Informacji i Technologii Kwantowych

sala 1.02, ul. Pasteura 5
2017-03-09 (10:30) Calendar icon
Lucas Celeri (Federal University of Goiás, Brazylia)

Geometric approach to time-energy uncertainty relations

The attempt to gain a theoretical understanding of the concept of time in quantum mechanics has triggered significant progress towards the search for faster and more efficient quantum technologies. One of such advances consists in the interpretation of the time-energy uncertainty relations as lower bounds for the minimal evolution time between two distinguishable states of a quantum system, also known as quantum speed limits. Here we discuss how the nonuniqueness of a bona fide measure of distinguishability defined on the quantum-state space affects the quantum speed limits and can be exploited in order to derive improved bounds. Specifically, we establish an infinite family of quantum speed limits valid for unitary and nonunitary evolutions, based on an elegant information geometric formalism. Some possible applications in quantum thermodynamics are also discussed.

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