Roychowdhury, Agniva and Deffner, Sebastian (2021) Time-Rescaling of Dirac Dynamics: Shortcuts to Adiabaticity in Ion Traps and Weyl Semimetals. Entropy, 23 (1). p. 81. ISSN 1099-4300
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Abstract
Only very recently, rescaling time has been recognized as a way to achieve adiabatic dynamics in fast processes. The advantage of time-rescaling over other shortcuts to adiabaticity is that it does not depend on the eigenspectrum and eigenstates of the Hamiltonian. However, time-rescaling requires that the original dynamics are adiabatic, and in the rescaled time frame, the Hamiltonian exhibits non-trivial time-dependence. In this work, we show how time-rescaling can be applied to Dirac dynamics, and we show that all time-dependence can be absorbed into the effective potentials through a judiciously chosen unitary transformation. This is demonstrated for two experimentally relevant scenarios, namely for ion traps and adiabatic creation of Weyl points. View Full-Text
Item Type: | Article |
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Uncontrolled Keywords: | shortcuts to adiabaticity; quantum control; Dirac dynamics; ion traps; Weyl semimetals |
Subjects: | STM Repository > Multidisciplinary |
Depositing User: | Managing Editor |
Date Deposited: | 03 Apr 2023 06:01 |
Last Modified: | 01 Aug 2024 06:57 |
URI: | http://classical.goforpromo.com/id/eprint/471 |