PyLCP: A python package for computing laser cooling physics

Fuente: arXiv
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Hauptverfasser: Eckel, S., Barker, D. S., Norrgard, E. B., Scherschligt, J.
Format: Preprint
Veröffentlicht: 2020
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author Eckel, S.
Barker, D. S.
Norrgard, E. B.
Scherschligt, J.
author_facet Eckel, S.
Barker, D. S.
Norrgard, E. B.
Scherschligt, J.
contents We present a python object-oriented computer program for simulating various aspects of laser cooling physics. Our software is designed to be both easy to use and adaptable, allowing the user to specify the level structure, magnetic field profile, or the laser beams' geometry, detuning, and intensity. The program contains three levels of approximation for the motion of the atom, applicable in different regimes offering cross checks for calculations and computational efficiency depending on the physical situation. We test the software by reproducing well-known phenomena, such as damped Rabi flopping, electromagnetically induced transparency, stimulated Raman adiabatic passage, and optical molasses. We also use our software package to quantitatively simulate recoil-limited magneto-optical traps, like those formed on the narrow $^1$S$_0\rightarrow ^3$P$_1$ transition in $^{88}$Sr and $^{87}$Sr.
format Preprint
id arxiv_https___arxiv_org_abs_2011_07979
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle PyLCP: A python package for computing laser cooling physics
Eckel, S.
Barker, D. S.
Norrgard, E. B.
Scherschligt, J.
Atomic Physics
Computational Physics
Quantum Physics
We present a python object-oriented computer program for simulating various aspects of laser cooling physics. Our software is designed to be both easy to use and adaptable, allowing the user to specify the level structure, magnetic field profile, or the laser beams' geometry, detuning, and intensity. The program contains three levels of approximation for the motion of the atom, applicable in different regimes offering cross checks for calculations and computational efficiency depending on the physical situation. We test the software by reproducing well-known phenomena, such as damped Rabi flopping, electromagnetically induced transparency, stimulated Raman adiabatic passage, and optical molasses. We also use our software package to quantitatively simulate recoil-limited magneto-optical traps, like those formed on the narrow $^1$S$_0\rightarrow ^3$P$_1$ transition in $^{88}$Sr and $^{87}$Sr.
title PyLCP: A python package for computing laser cooling physics
topic Atomic Physics
Computational Physics
Quantum Physics
url https://arxiv.org/abs/2011.07979