Symmetry and Decoherence-Free Subspaces in Quantum Neural Networks
- Authors: Altaisky M.V.1, Kaputkina N.E.2, Krylov V.A.3
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Affiliations:
- Space Research Institute RAS
- National University of Science and Technology “MISIS”
- Joint Institute for Nuclear Research
- Issue: Vol 81, No 6 (2018)
- Pages: 792-798
- Section: Elementary Particles and Fields
- URL: https://journals.rcsi.science/1063-7788/article/view/196017
- DOI: https://doi.org/10.1134/S1063778818060030
- ID: 196017
Cite item
Abstract
Evolution of quantum states of array of quantum dots is analyzed by means of numerical solution of the von Neumann equation. For two qubit system with dipole–dipole interaction and common phonon bath the evolution of the symmetric state \(\frac{{ \uparrow \downarrow + \downarrow \uparrow }}{{\sqrt 2 }}\) leads to the mixture of the triplet states, leaving the singlet decoupled. For three qubit system \(\left( {D_{1/2}^{ \otimes 3} = D_{3/2} + 2D_{1/2} } \right)\) with common phonon bath we observed similar effects within the quartet state D3/2 if all qubits were symmetrically connected.
About the authors
M. V. Altaisky
Space Research Institute RAS
Author for correspondence.
Email: altaisky@rssi.ru
Russian Federation, Moscow
N. E. Kaputkina
National University of Science and Technology “MISIS”
Email: altaisky@rssi.ru
Russian Federation, Moscow
V. A. Krylov
Joint Institute for Nuclear Research
Email: altaisky@rssi.ru
Russian Federation, Dubna
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