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Updated: Nov 8, 2025

Development of a Microfluidics-Based Approach for Investigating Microtubule Polymer Mechanics
Published on: May 30, 2025
Demonstration of a MOT in a sub-millimeter membrane hole
Jongmin Lee1, Grant Biedermann2, John Mudrick2
1Sandia National Laboratories, Albuquerque, NM, 87185, USA. jongmin.lee@sandia.gov.
Abstract:
We demonstrate the generation of a cold-atom ensemble within a sub-millimeter diameter hole in a transparent membrane, a so-called "membrane MOT". With a sub-Doppler cooling process, the atoms trapped by the membrane MOT are cooled down to 10 [Formula: see text]K. The atom number inside the unbridged/bridged membrane hole is about [Formula: see text] to [Formula: see text], and the [Formula: see text]-diameter of the MOT cloud is about 180 [Formula: see text]m for a 400 [Formula: see text]m-diameter membrane hole. Such a membrane device can, in principle, efficiently load cold atoms into the evanescent-field optical trap generated by the suspended membrane waveguide for strong atom-light interaction and provide the capability of sufficient heat dissipation at the waveguide. This represents a key step toward the photonic atom trap integrated platform (ATIP).

