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Trapped Ion Quantum Computing Quantum Simulation

Dirac open quantum system dynamics: formulations and simulations

arXiv
Authors: Renan Cabrera, Andre G. Campos, Denys I. Bondar, Herschel A. Rabitz

Year

2014

Paper ID

47731

Status

Preprint

Abstract Read

~2 min

Abstract Words

105

Citations

1

Abstract

We present an open system interaction formalism for the Dirac equation. Overcoming a complexity bottleneck of alternative formulations, our framework enables efficient numerical simulations (utilizing a typical desktop) of relativistic dynamics within the von Neumann density matrix and Wigner phase space descriptions. Employing these instruments, we gain important insights into the effect of quantum dephasing for relativistic systems in many branches of physics. In particular, the conditions for robustness of Majorana spinors against dephasing are established. Using the Klein paradox and tunneling as examples, we show that quantum dephasing does not suppress negative energy particle generation. Hence, the Klein dynamics is also robust to dephasing.

Why This Paper Matters

  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
  • It adds a 2014 reference point for readers tracking recent quantum research.
  • We present an open system interaction formalism for the Dirac equation.

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Current Paper #47731 #69038 Physically Constrained Ensemble... #69023 Scalable Quantum Algorithms for... #68990 Driving Exchange Interaction in... #68985 Floquet Entanglement Generation...

External citation index: OpenAlex citation signal • updated 2026-06-18 02:21:06

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