Ultra-Cold Cryogenic TEM with Liquid Helium and High Stability
arXiv:2402.00636 · doi:10.1073/pnas.2509736122
Abstract
Cryogenic transmission electron microscopy has revolutionized structural biology and materials science, but achieving temperatures below the boiling point of liquid nitrogen remains a long-standing aspiration. We introduce an ultra-cold liquid helium transmission electron microscope 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.
5 pages, 2 figures
References in corpus (1)
Cited by in corpus (4)
- Imaging Nanoscale Carrier, Thermal, and Structural Dynamics with Time-Resolved and Ultrafast Electron Energy-Loss Spectroscopy
- Towards reliable electrical measurements of superconducting devices inside a transmission electron microscope
- Melting point depression of charge density wave in 1T-TiSe due to size effects
- Nanoscale Polar Landscapes in Quantum Paraelectric SrTiO3