Ultracold cryogenic TEM with liquid helium and high stability

E Emily Rennich (The Rowland Institute at Harvard) S Suk Hyun Sung N Nishkarsh Agarwal M Maya Gates R Robert Kerns (Michigan Center for Materials Characterization) R Robert Hovden I Ismail El Baggari

Abstract

Cryogenic transmission electron microscopy has revolutionized structural biology and materials science. To image below liquid nitrogen temperatures, various liquid helium stages have been constructed but have proven to be complex and unstable, making high-resolution imaging challenging. This problem is even more pronounced in side-entry specimen holders common on modern transmission electron microscopes. Here, we introduce an ultracold liquid helium transmission electron microscope side-entry specimen holder, featuring continuous cryogen flow and vibration decoupling. This instrument is compatible with modern aberration-corrected microscopes and achieves sub-25 K base temperature, ± 2 mK thermal stability over many hours, and atomic resolution—setting the stage for a new era of cryogenic electron microscopy.

Article Details

Volume / Issue Vol. 122, Issue 36
Published September 09, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (7)

E

Emily Rennich

The Rowland Institute at Harvard

S

Suk Hyun Sung

N

Nishkarsh Agarwal

M

Maya Gates

R

Robert Kerns

Michigan Center for Materials Characterization

R

Robert Hovden

I

Ismail El Baggari