- Home
- Search Results
- Page 1 of 1
Search for: All records
-
Total Resources3
- Resource Type
-
0001000002000000
- More
- Availability
-
30
- Author / Contributor
- Filter by Author / Creator
-
-
Woller, Kevin (2)
-
Boonkird, Artittaya (1)
-
Bowman, William J. (1)
-
Brown, Summer J. (1)
-
Chen, Xiaoqian_M (1)
-
Chotrattanapituk, Abhijatmedhi (1)
-
Cortese, Callia J. (1)
-
Crumlin, Ethan J. (1)
-
Dilworth, John (1)
-
Drucker, Nathan_C (1)
-
Hung, Nguyen_Tuan (1)
-
Johnson, Sarah (1)
-
Kong, Jing (1)
-
Kumar, Abinash (1)
-
LeBeau, James M. (1)
-
Li, Ju (1)
-
Li, Mingda (1)
-
Mandal, Manasi (1)
-
Mao, Nannan (1)
-
McGlue, Michael (1)
-
- 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.
-
Mandal, Manasi; Chotrattanapituk, Abhijatmedhi; Woller, Kevin; Wu, Lijun; Xu, Haowei; Hung, Nguyen_Tuan; Mao, Nannan; Okabe, Ryotaro; Boonkird, Artittaya; Nguyen, Thanh; et al (, Applied Physics Reviews)The precise controllability of the Fermi level is a critical aspect of quantum materials. For topological Weyl semimetals, there is a pressing need to fine-tune the Fermi level to the Weyl nodes and unlock exotic electronic and optoelectronic effects associated with the divergent Berry curvature. However, in contrast to two-dimensional materials, where the Fermi level can be controlled through various techniques, the situation for bulk crystals beyond laborious chemical doping poses significant challenges. Here, we report the milli-electron-volt (meV) level ultra-fine-tuning of the Fermi level of bulk topological Weyl semimetal tantalum phosphide using accelerator-based high-energy hydrogen implantation and theory-driven planning. By calculating the desired carrier density and controlling the accelerator profiles, the Fermi level can be experimentally fine-tuned from 5 meV below, to 3.8 meV below, to 3.2 meV above the Weyl nodes. High-resolution transmission electron microscopy reveals the crystalline structure is largely maintained under irradiation, while electrical transport indicates that Weyl nodes are preserved and carrier mobility is also largely retained. Our work demonstrates the viability of this generic approach to tune the Fermi level in semimetal systems and could serve to achieve property fine-tuning for other bulk quantum materials with ultrahigh precision.more » « less
-
Wang, Jiayue; Kumar, Abinash; Wardini, Jenna L.; Zhang, Zhan; Zhou, Hua; Crumlin, Ethan J.; Sadowski, Jerzy T.; Woller, Kevin B.; Bowman, William J.; LeBeau, James M.; et al (, Nano Letters)
An official website of the United States government
