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Research PaperResearchia:202609.11040

Kinetic modeling of molecular beam formation in a cryogenic buffer-gas cell

Ekkehard Steinmacher

Abstract

Cryogenic buffer-gas cells are widely used to produce cold molecular beams, but the microscopic dynamics governing beam formation remain challenging to model. Here we present fully kinetic simulations of a cryogenic buffer-gas cell using the Direct Simulation Monte Carlo method implemented in the PICLas framework, treating the buffer gas and ablated molecules within a single unified model. We capture characteristic features of cryogenic buffer-gas sources, including plume cooling, directed trans...

Submitted: September 11, 2026Subjects: Chemistry; Chemistry

Description / Details

Cryogenic buffer-gas cells are widely used to produce cold molecular beams, but the microscopic dynamics governing beam formation remain challenging to model. Here we present fully kinetic simulations of a cryogenic buffer-gas cell using the Direct Simulation Monte Carlo method implemented in the PICLas framework, treating the buffer gas and ablated molecules within a single unified model. We capture characteristic features of cryogenic buffer-gas sources, including plume cooling, directed transport toward the aperture, and the formation of a slow molecular beam, while also resolving energy transfer from the hot ablation plume to the helium buffer gas that is inaccessible to existing approaches relying on the background-gas approximation. Our results demonstrate that fully kinetic simulations can provide detailed insights into buffer-gas cell dynamics and open a route toward a systematic optimization of such sources.


Source: arXiv:2609.11544v1 - http://arxiv.org/abs/2609.11544v1 PDF: https://arxiv.org/pdf/2609.11544v1 Original Link: http://arxiv.org/abs/2609.11544v1

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Date:
Sep 11, 2026
Topic:
Chemistry
Area:
Chemistry
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