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ARC: An open-source library for calculating properties of alkali Rydberg atoms

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arxiv 1612.05529 v2 pith:4ISD7RPJ submitted 2016-12-16 physics.atom-ph physics.atm-clusphysics.comp-phquant-ph

classification physics.atom-phphysics.atm-clusphysics.comp-phquant-ph
keywords atomsrydberglibraryquantumalkaliatomicdipoleeffects
verification ladder T0 review T1 audit T2 compute T3 formal
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We present an object-oriented Python library for computation of properties of highly-excited Rydberg states of alkali atoms. These include single-body effects such as dipole matrix elements, excited-state lifetimes (radiative and black-body limited) and Stark maps of atoms in external electric fields, as well as two-atom interaction potentials accounting for dipole and quadrupole coupling effects valid at both long and short range for arbitrary placement of the atomic dipoles. The package is cross-referenced to precise measurements of atomic energy levels and features extensive documentation to facilitate rapid upgrade or expansion by users. This library has direct application in the field of quantum information and quantum optics which exploit the strong Rydberg dipolar interactions for two-qubit gates, robust atom-light interfaces and simulating quantum many-body physics, as well as the field of metrology using Rydberg atoms as precise microwave electrometers.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Modeling and Simulating Rydberg Atom Quantum Computers for Hardware-Software Co-design with PachinQo

    quant-ph 2024-12 conditional novelty 7.0 of 10

    PachinQo is a co-design framework that compiles general quantum algorithms onto zonal-addressing Rydberg atom computers, reducing simulated runtime and raising estimated success probability.

  2. Many-Body Physics from Spin-Phonon Coupling in Rydberg Atom Arrays

    cond-mat.quant-gas 2025-07 conditional novelty 6.0 of 10

    Spin-phonon coupling from atomic vibrations in Rydberg arrays induces three-spin interactions that stabilize a new Z3 phase and suppress quantum scar thermalization.

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