- Home
- Search Results
- Page 1 of 1
Search for: All records
-
Total Resources2
- Resource Type
-
0000100001000000
- More
- Availability
-
20
- Author / Contributor
- Filter by Author / Creator
-
-
Stone, Greg (2)
-
Bostic, Jonathan (1)
-
Cai, Zhonghou (1)
-
Chen, Long‐Qing (1)
-
Datta, Suman (1)
-
Dingman, Shannon (1)
-
Engel‐Herbert, Roman (1)
-
Gopalan, Venkatraman (1)
-
Jerry, Matthew (1)
-
Koskey, Kristin (1)
-
Matney, Gabriel (1)
-
May, Toni (1)
-
Paik, Hanjong (1)
-
Roth_McDuffie, Amy (1)
-
Schlom, Darrell_G (1)
-
Shi, Yin (1)
-
Stoica, Vladimir (1)
-
Teuscher, Dawn (1)
-
Wen, Haidan (1)
-
#Tyler Phillips, Kenneth E. (0)
-
- Filter by Editor
-
-
& Spizer, S. M. (0)
-
& . Spizer, S. (0)
-
& Ahn, J. (0)
-
& Bateiha, S. (0)
-
& Bosch, N. (0)
-
& Brennan K. (0)
-
& Brennan, K. (0)
-
& Chen, B. (0)
-
& Chen, Bodong (0)
-
& Drown, S. (0)
-
& Ferretti, F. (0)
-
& Higgins, A. (0)
-
& J. Peters (0)
-
& Kali, Y. (0)
-
& Ruiz-Arias, P.M. (0)
-
& S. Spitzer (0)
-
& Sahin. I. (0)
-
& Spitzer, S. (0)
-
& Spitzer, S.M. (0)
-
(submitted - in Review for IEEE ICASSP-2024) (0)
-
-
Have feedback or suggestions for a way to improve these results?
!
Note: When clicking on a Digital Object Identifier (DOI) number, you will be taken to an external site maintained by the publisher.
Some full text articles may not yet be available without a charge during the embargo (administrative interval).
What is a DOI Number?
Some links on this page may take you to non-federal websites. Their policies may differ from this site.
-
Two case studies are presented to demonstrate the importance of intentionally utilizing subject matter expert and psychometrician expertise throughout the development process for cognitive and affective mathematical instruments. While the cases are unique, both empirically support the need for continued and thoughtful collaborative efforts during mathematical instrument development to produce meaningful measures.more » « less
-
Stone, Greg; Shi, Yin; Jerry, Matthew; Stoica, Vladimir; Paik, Hanjong; Cai, Zhonghou; Schlom, Darrell_G; Engel‐Herbert, Roman; Datta, Suman; Wen, Haidan; et al (, Advanced Materials)Abstract The drive toward non‐von Neumann device architectures has led to an intense focus on insulator‐to‐metal (IMT) and the converse metal‐to‐insulator (MIT) transitions. Studies of electric field‐driven IMT in the prototypical VO2thin‐film channel devices are largely focused on the electrical and elastic responses of the films, but the response of the corresponding TiO2substrate is often overlooked, since it is nominally expected to be electrically passive and elastically rigid. Here, in‐operando spatiotemporal imaging of the coupled elastodynamics using X‐ray diffraction microscopy of a VO2film channel device on TiO2substrate reveals two new surprises. First, the film channel bulges during the IMT, the opposite of the expected shrinking in the film undergoing IMT. Second, a microns thick proximal layer in the substrate also coherently bulges accompanying the IMT in the film, which is completely unexpected. Phase‐field simulations of coupled IMT, oxygen vacancy electronic dynamics, and electronic carrier diffusion incorporating thermal and strain effects suggest that the observed elastodynamics can be explained by the known naturally occurring oxygen vacancies that rapidly ionize (and deionize) in concert with the IMT (MIT). Fast electrical‐triggering of the IMT via ionizing defects and an active “IMT‐like” substrate layer are critical aspects to consider in device applications.more » « less
An official website of the United States government

Full Text Available