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Quantum Simulation
Classical analog of qubit logic based on a magnon Bose-Einstein condensate
arXiv
Authors: Morteza Mohseni, Vitaliy I. Vasyuchka, Victor S. L'vov, Alexander A. Serga, Burkard Hillebrands
Year
2021
Paper ID
6881
Status
Preprint
Abstract Read
~2 min
Abstract Words
138
Citations
N/A
Abstract
We present a classical version of several quantum bit (qubit) functionalities using a two-component magnon Bose-Einstein condensate formed at opposite wavevectors in a room-temperature yttrium-iron-garnet ferrimagnetic film. The macroscopic wavefunctions of these two condensates serve as orthonormal basis states that form a system being a classical counterpart of a single qubit. Solving the Gross-Pitaevskii equation and employing micromagnetic numerical simulations, we first show how to initialize the system in one of the basis states: the application of wavevector-selective parallel parametric pumping allows us to form only a single condensate in one of the two lowest energy states of the magnon gas. Next, by translating the concept of Rabi-oscillations into the wavevector domain, we demonstrate how to manipulate the magnon-BEC system along the polar axis in the Bloch sphere representation. We also discuss the manipulation regarding the azimuthal angle.
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- We present a classical version of several quantum bit (qubit) functionalities using a two-component magnon Bose-Einstein condensate formed at opposite wavevectors in a...
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