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The energy distribution of an ion in a radiofrequency trap interacting with a nonuniform neutral buffer gas
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 4526107
Author(s) Rouse, Ian; Willitsch, Stefan
Author(s) at UniBasel Rouse, Ian
Willitsch, Stefan
Year 2019
Title The energy distribution of an ion in a radiofrequency trap interacting with a nonuniform neutral buffer gas
Journal Molecular Physics
Volume 117
Number 21
Pages / Article-Number 3120-3131
Keywords Ion-neutral collisions; hybrid traps; sympathetic cooling; superstatistics; Tsallis statistics
Mesh terms Science & TechnologyPhysical SciencesChemistry, PhysicalPhysics, Atomic, Molecular & ChemicalChemistryPhysics
Abstract An ion in a radiofrequency (rf) trap sympathetically cooled by a simultaneously trapped neutral buffer gas exhibits deviations from thermal statistics caused by collision-induced coupling of the rf field to the ion motion. For a uniform density distribution of the buffer gas, the energy distribution of the ion can be described by Tsallis statistics. Moreover, runaway heating of the ion occurs if the buffer gas particles are sufficiently heavy relative to the ion. In typical experiments, however, ultracold buffer gases are confined in traps resulting in localised, non-uniform density distributions. Using a superstatistical approach, we develop an analytical model for an ion interacting with a localised buffer gas. We demonstrate theoretically that limiting collisions to the centre of the ion trap enables cooling at far greater mass ratios than achievable using a uniform buffer gas, but that an upper limit to the usable mass ratio exists even in this case. Furthermore, we analytically derive the functional form of the energy distribution for an ion interacting with a buffer gas held in a harmonic potential. The analytical distribution obtained is found to be in excellent agreement with the results of numerical simulations.
Publisher Taylor & Francis
ISSN/ISBN 0026-8976 ; 1362-3028
URL https://edoc.unibas.ch/74467/1/20200115162951_5e1f2fef44418.pdf
edoc-URL https://edoc.unibas.ch/74467/
Full Text on edoc Available
Digital Object Identifier DOI 10.1080/00268976.2019.1581952
ISI-Number 000487919400020
Document type (ISI) Article
 
   

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