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Alexander J Grutter

Explore the profile of Alexander J Grutter including associated specialties, affiliations and a list of published articles. Areas
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Articles 25
Citations 90
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Recent Articles
1.
Gilbert D, Grutter A, Murray P, Chopdekar R, Kane A, Ionin A, et al.
Phys Rev Mater . 2024 Nov; 2(10). PMID: 39534697
Control of materials through custom design of ionic distributions represents a powerful new approach to develop future technologies ranging from spintronic logic and memory devices to energy storage. Perovskites have...
2.
Balakrishnan P, Ferenc Segedin D, Chow L, Quarterman P, Muramoto S, Surendran M, et al.
Nat Commun . 2024 Aug; 15(1):7387. PMID: 39191732
A key open question in the study of layered superconducting nickelate films is the role that hydrogen incorporation into the lattice plays in the appearance of the superconducting state. Due...
3.
Yuan W, Yan Z, Yi H, Wang Z, Paolini S, Zhao Y, et al.
Nano Lett . 2024 Jun; 24(26):7962-7971. PMID: 38885199
The interface of two materials can harbor unexpected emergent phenomena. One example is interface-induced superconductivity. In this work, we employ molecular beam epitaxy to grow a series of heterostructures formed...
4.
Arndt N, Hershkovitz E, Shah L, Kjaernes K, Yang C, Balakrishnan P, et al.
Materials (Basel) . 2024 Mar; 17(5). PMID: 38473659
The effect of oxygen reduction on the magnetic properties of LaFeO (LFO) thin films was studied to better understand the viability of LFO as a candidate for magnetoionic memory. Differences...
5.
Kane M, Bhandari C, Holtz M, Balakrishnan P, Grutter A, Fitzsimmons M, et al.
Nano Lett . 2024 Feb; 24(8):2567-2573. PMID: 38367281
The boundary between CaRuO and CaMnO is an ideal test bed for emergent magnetic ground states stabilized through interfacial electron interactions. In this system, nominally antiferromagnetic and paramagnetic materials combine...
6.
Yi H, Zhao Y, Chan Y, Cai J, Mei R, Wu X, et al.
Science . 2024 Feb; 383(6683):634-639. PMID: 38330133
The interface between two different materials can show unexpected quantum phenomena. In this study, we used molecular beam epitaxy to synthesize heterostructures formed by stacking together two magnetic materials, a...
7.
Tang N, Liyanage W, Montoya S, Patel S, Quigley L, Grutter A, et al.
Adv Mater . 2023 May; 35(33):e2300416. PMID: 37139924
Magnetic skyrmions exhibit unique, technologically relevant pseudo-particle behaviors which arise from their topological protection, including well-defined, 3D dynamic modes that occur at microwave frequencies. During dynamic excitation, spin waves are...
8.
Novakov S, Meisenheimer P, Pan G, Kezer P, Vu N, Grutter A, et al.
Adv Mater . 2023 Apr; 35(31):e2209866. PMID: 37120799
Non-collinear antiferromagnets (AFMs) are an exciting new platform for studying intrinsic spin Hall effects (SHEs), phenomena that arise from the materials' band structure, Berry phase curvature, and linear response to...
9.
Jensen C, Quintana A, Quarterman P, Grutter A, Balakrishnan P, Zhang H, et al.
ACS Nano . 2023 Mar; 17(7):6745-6753. PMID: 36995303
Electric field control of the exchange bias effect across ferromagnet/antiferromagnet (FM/AF) interfaces has offered exciting potentials for low-energy-dissipation spintronics. In particular, the solid-state magneto-ionic means is highly appealing as it...
10.
Lu Q, Liu Z, Yang Q, Cao H, Balakrishnan P, Wang Q, et al.
ACS Nano . 2022 Apr; 16(5):7580-7588. PMID: 35446560
The combination of small coercive fields and weak magnetic anisotropy makes soft ferromagnetic films extremely useful for nanoscale devices that need to easily switch spin directions. However, soft ferromagnets are...