Relativistic quantum mechanics with trapped ions
Lucas Lamata, J. Casanova, R. Gerritsma, C. F. Roos, Juan José García‐Ripoll, E. Solano
Abstract
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Lucas Lamata, J. Casanova, R. Gerritsma, C. F. Roos, Juan José García‐Ripoll, E. Solano
Abstract
Open-access reader
We consider the quantum simulation of relativistic quantum mechanics, as described by the Dirac equation and classical potentials, in trapped-ion systems. We concentrate on three problems of growing complexity. Firstly, we study the bidimensional relativistic scattering of single Dirac particles by a linear potential. Secondly, we explore the case of a Dirac particle in a magnetic field and its topological properties. Finally, we analyze the problem of two Dirac particles that are coupled by a controllable and confining potential. The latter interaction may be useful to study important phenomena such as the confinement and asymptotic freedom of quarks.
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We consider the quantum simulation of relativistic quantum mechanics, as described by the Dirac equation and classical potentials, in trapped-ion systems. We concentrate on three problems of growing complexity. Firstly, we study the bidimensional relativistic scattering of single Dirac particles by a linear potential. Secondly, we explore the case of a Dirac particle in a magnetic field and its topological properties. Finally, we analyze the problem of two Dirac particles that are coupled by a controllable and confining potential. The latter interaction may be useful to study important phenomena such as the confinement and asymptotic freedom of quarks.
Key concepts: Physics, Ion, Quantum mechanics, Relativistic quantum mechanics, Classical mechanics, Quantum, Theoretical physics, Quantum electrodynamics