» Authors » Matthew J Kramer

Matthew J Kramer

Explore the profile of Matthew J Kramer including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 22
Citations 126
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Murthy A, Das P, Ribet S, Kopas C, Lee J, Reagor M, et al.
ACS Nano . 2022 Sep; 16(10):17257-17262. PMID: 36153944
Superconducting thin films of niobium have been extensively employed in transmon qubit architectures. Although these architectures have demonstrated improvements in recent years, further improvements in performance through materials engineering will...
2.
Han I, McKeown J, Tang L, Wang C, Parsamehr H, Xi Z, et al.
Phys Rev Lett . 2020 Nov; 125(19):195503. PMID: 33216596
We report the laser-induced solid-state transformation between a periodic "approximant" and quasicrystal in the Al-Cr system during rapid quenching. Dynamic transmission electron microscopy allows us to capture in situ the...
3.
Chaudhary R, Gandha K, Meng F, Simsek E, Nlebedim I, Rios O, et al.
ACS Comb Sci . 2020 Mar; 22(5):248-254. PMID: 32207918
Additive manufacturing synthesis using laser engineered net shaping (LENS) is utilized to rapidly print libraries of mischmetal (MM = La, Ce, Nd, and Pr) containing RTMB alloys (R = MM...
4.
Kim T, Zhao H, Xu B, Jensen B, King A, Kramer M, et al.
Nano Lett . 2020 Mar; 20(7):4731-4738. PMID: 32202799
Real-space topological magnetic structures such as skyrmions and merons are promising candidates for information storage and transport. However, the microscopic mechanisms that control their formation and evolution are still unclear....
5.
Thampy V, Fong A, Calta N, Wang J, Martin A, DePond P, et al.
Sci Rep . 2020 Feb; 10(1):1981. PMID: 32029753
Laser powder bed fusion (LPBF) is a method of additive manufacturing characterized by the rapid scanning of a high powered laser over a thin bed of metallic powder to create...
6.
Ma T, Fan Z, Xu B, Kim T, Lu P, Bellaiche L, et al.
Phys Rev Lett . 2019 Dec; 123(21):217602. PMID: 31809133
Complex polar structures of incommensurate modulations (ICMs) are revealed in chemically modified PbZrO_{3} perovskite antiferroelectrics using advanced transmission electron microscopy techniques. The Pb-cation displacements, previously assumed to arrange in a...
7.
Hou H, Simsek E, Ma T, Johnson N, Qian S, Cisse C, et al.
Science . 2019 Nov; 366(6469):1116-1121. PMID: 31780556
Elastocaloric cooling, a solid-state cooling technology, exploits the latent heat released and absorbed by stress-induced phase transformations. Hysteresis associated with transformation, however, is detrimental to efficient energy conversion and functional...
8.
Peng L, Zhang Y, Ke L, Kim T, Zheng Q, Yan J, et al.
Nano Lett . 2018 Dec; 18(12):7777-7783. PMID: 30499678
The promise of magnetic skyrmions in future spintronic devices hinges on their topologically enhanced stability and the ability to be manipulated by external fields. The technological advantages of nonvolatile zero-field...
9.
Calta N, Wang J, Kiss A, Martin A, DePond P, Guss G, et al.
Rev Sci Instrum . 2018 Jun; 89(5):055101. PMID: 29864819
In situ X-ray-based measurements of the laser powder bed fusion (LPBF) additive manufacturing process produce unique data for model validation and improved process understanding. Synchrotron X-ray imaging and diffraction provide...
10.
Pham J, Meng F, Lynn M, Ma T, Kreyssig A, Kramer M, et al.
J Am Chem Soc . 2017 Dec; 140(4):1337-1347. PMID: 29284266
The irreversible transformation from an icosahedral quasicrystal (i-QC) CaAuAl to its cubic 2/1 crystalline approximant (CA) CaAuAl (CaAuAl, Pa3̅ (No. 205); Pearson symbol: cP728; a = 23.8934(4)), starting at ∼570...