From curved spacetime to spacetime-dependent local unitaries over the honeycomb and triangular Quantum Walks. 2019

Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
Aix-Marseille Univ, Université de Toulon, CNRS, LIS, Marseille, France and IXXI, Lyon, France. pablo.arrighi@univ-amu.fr.

A discrete-time Quantum Walk (QW) is an operator driving the evolution of a single particle on the lattice, through local unitaries. In a previous paper, we showed that QWs over the honeycomb and triangular lattices can be used to simulate the Dirac equation. We apply a spacetime coordinate transformation upon the lattice of this QW, and show that it is equivalent to introducing spacetime-dependent local unitaries -whilst keeping the lattice fixed. By exploiting this duality between changes in geometry, and changes in local unitaries, we show that the spacetime-dependent QW simulates the Dirac equation in (2 + 1)-dimensional curved spacetime. Interestingly, the duality crucially relies on the non linear-independence of the three preferred directions of the honeycomb and triangular lattices: The same construction would fail for the square lattice. At the practical level, this result opens the possibility to simulate field theories on curved manifolds, via the quantum walk on different kinds of lattices.

UI MeSH Term Description Entries

Related Publications

Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
March 2005, Physical review. E, Statistical, nonlinear, and soft matter physics,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
April 2024, Nature,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
November 2022, Nature,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
June 1987, Physical review. D, Particles and fields,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
June 1989, Physical review. D, Particles and fields,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
May 1992, Physical review. B, Condensed matter,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
January 1987, Physical review. D, Particles and fields,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
July 2021, Acta crystallographica. Section A, Foundations and advances,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
April 2018, Physical review letters,
Pablo Arrighi, and Giuseppe Di Molfetta, and Ivan Marquez-Martin, and Armando Perez
November 1993, Physical review letters,
Copied contents to your clipboard!