DOE OSTI · 1856021
Kitaev model on a quantum computer using VQE with Majorana fermions
Abstract
We study the simulation of the Kitaev spin model on quantum computers. In particular we focus on the models defined on the honeycomb, and square-octagon lattices. Using a fermionic language to describe these models reveals a region of the parameter space that is exactly solvable. We explore an ansatz that is capable of expressing the ground state in the exactly solvable region of the parameter space and extend it outside this region with good accuracy. Doing the calculation using fermions, while requiring the introduction of a non-local map from the fermionic Hilbert space to that of qubits, offers the potentially interesting application of realizing non-abelian anyons on quantum computers, and can also lead to a reduction in the number of qubits required by half.
Keep this discovery
Explore connections, maps & timelines
Jahin, Ammar, Li, Andy C.Y., Iadecola, Thomas, Orth, Peter P., Perdue, Gabriel N., Macridin, Alexandru, Sohaib Alam, M., Tubman, Norm M.. 2022-01-01. Kitaev model on a quantum computer using VQE with Majorana fermions. https://www.osti.gov/biblio/1856021
Cite the original work for its findings. Save a collection to share your selection of sources.