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Ultra-Low Temperature Liquid Helium Side Entry Electron Microscopy Holder

Awardee

HUMMINGBIRD PRECISION MACHINE CO.

2610 WILLAMETTE DR NE STE A
LACEY, WA, 98516-1329
USA

Award Year: 2021

UEI: YL5LGSA9X7N3

HUBZone Owned: No

Woman Owned: No

Socially and Economically Disadvantaged: No

Congressional District: 10

Tagged as:

SBIR

Phase II

Seal of the Agency: DOE

Awarding Agency

DOE

Total Award Amount: $1,100,000

Contract Number: DE-SC0020540

Agency Tracking Number: 0000257154

Solicitation Topic Code: 15b

Solicitation Number: N/A

Abstract

To exploit future quantum computing technologies, it is critical to image quantum processes in materials at high atomic resolution and at low temperatures (between 4 and 70 Kelvin) in the transmission electron microscope (TEM). Current instruments aimed at performing this task are both lacking the imaging stability to get good high-resolution images and intimidating/complex to use, which has severely limited their accessibility to researchers and subsequently minimized their impact on science. Both the DOE and the research community in the quantum field have expressed a need for an easy-to-use and highly stable liquid helium-cooled TEM sample holder in order for the fundamental atomic-level physics of quantum systems to be understood and exploited. In response to this need, Hummingbird Scientific has successfully developed, prototyped, and tested new liquid helium (LHe) cooled side-entry holder with in-situ biasing capabilities to demonstrate proof-of-concept in Phase I. Our design is aimed at making LHe temperature imaging and in-situ experimentation more accessible by reducing cooldown times, simplifying biasing connections, and improving sample stability, and thus imaging conditions. Our Phase I results demonstrate that our design can successfully deliver the core capabilities of the product, i.e., extended thermal stability at ~10 Kelvin, electrical biasing, and high-resolution imaging stability. Based on these results, Hummingbird Scientific will in Phase II further develop and commercialize this technology into an advanced LHe cryo/biasing TEM specimen holder with the following features and capabilities: (1) an easy-to-use and reliable electrical stimulus to the sample, (2) double-tilt (α-tilt and β-tilt control) mechanism to orient the sample in several crystallographic facets for structural mapping, (3) Stepwise variable temperature control, and (4) long imaging time (> 1 hour) at high atomic resolution imaging mode. When commercialization efforts of these in-situ TEM systems succeed as expected, these methods will become widely available to researchers for understanding interactions over a heretofore-unexplored range of materials and temperatures for these electronic material systems. This will have a direct positive and accelerating effect on commercial electronic device development as well as on the production of next-generation electronic and quantum computing devices.

Award Schedule

  1. 2021
    Solicitation Year

  2. 2021
    Award Year

  3. May 3, 2021
    Award Start Date

  4. May 2, 2023
    Award End Date

Principal Investigator

Name: Khim Karki
Phone: (360) 252-2737
Email: khim_karki@hummingbirdscientific.com

Business Contact

Name: Daan Hein Alsem
Phone: (360) 252-2737
Email: daan_alsem@hummingbirdscientific.com

Research Institution

Name: N/A