Non-uniform magnetic field as a booster for quantum speed limit: faster quantum information processing

Author:

Aggarwal SrishtyORCID,Banerjee SubhashishORCID,Ghosh ArindamORCID,Mukhopadhyay BanibrataORCID

Abstract

Abstract We probe the quantum speed limit (QSL) of an electron when it is trapped in a non-uniform magnetic field. We show that the QSL increases to a large value, but within the regime of causality, by choosing a proper variation in magnetic fields. We also probe the dependence of QSL on spin of electron and find that it is higher for spin-down electron in the relativistic regime. This can be useful in achieving faster speed of transmission of quantum information. Further, we use the Bremermann–Bekenstein bound to find a critical magnetic field that bridges the gap between non-relativistic and relativistic treatments and relates to the stability of matter. An analytical framework is developed. We also provide a plausible experimental design to supplement our theory.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Quantum speed limit from a quantum-state-diffusion method;Physical Review A;2023-07-10

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3. Impact of non-Markovian evolution on characterizations of quantum thermodynamics;Frontiers in Quantum Science and Technology;2023-07-05

4. Quantum dynamical speedup for correlated initial states;Communications in Theoretical Physics;2023-07-01

5. Quantum Correlations and Speed Limit of Central Spin Systems;Annalen der Physik;2023-01-15

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