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pro vyhledávání: '"John Domann"'
Autor:
John Domann, Alecsander N. Imhof
Publikováno v:
Behavior and Mechanics of Multifunctional Materials IX.
By providing a fast and accurate constitutive model suitable for use in finite element analysis, a key barrier inhibiting the development of magnetostrictive technologies will be lowered. A magnetostrictive constitutive model must calculate the nonli
Autor:
John Domann, Alecsander Imhof
Publikováno v:
Multifunctional Materials. 5:015002
This paper presents an analytic model of one dimensional magnetostriction. We show how specific assumptions regarding the symmetry of key micromagnetic energies (magnetocrystalline, magnetoelastic, and Zeeman) reduce a general three-dimensional stati
Autor:
Cai Chen, Justin Sablik, Robert Dyro, Rob N. Candler, Shalin Mehta, Greg P. Carman, Reem Khojah, John Domann, Abdon E. Sepulveda, Jin-Zhao Hu, Zhuyun Xiao
Publikováno v:
Journal of Physics D: Applied Physics. 53:174002
Precise control and manipulation of nano-beads have various applications, e.g. cell sorter, 3D printing and nano-motors. In this paper we present an approach in which we use voltage on a piezolecetric substrate in order to reorient the magnetization
Autor:
John Domann
Publikováno v:
Active and Passive Smart Structures and Integrated Systems XII.
Publikováno v:
Physical Review Applied. 9
The recent push toward THz sensing, transduction, and memory has created a significant need for materials that operate above ferromagnetic resonance frequencies, which are typically in the low GHz range. Antiferromagnetic materials with THz resonance
Spin-orbit torque (SOT) represents an energy efficient method to control magnetization in magnetic memory devices. However, deterministically switching perpendicular memory bits usually requires the application of an additional bias field for breakin
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bf9566d537bb7aee19176ea8c1abd4e8
http://arxiv.org/abs/1802.01647
http://arxiv.org/abs/1802.01647
Autor:
David W. Shahan, Zhi Jackie Yao, Joseph D. Schneider, Sidhant Tiwari, Skyler Selvin, John Domann, Yuanxun Ethan Wang, Geoff McKnight, Gregory P. Carman, Rob N. Candler, Paymon Shirazi, Walter S. Wall, Casey J. Sennott, Mohanchandra K. Panduranga
Publikováno v:
Journal of Applied Physics. 126:224104
This paper experimentally demonstrates the operating principles of a near-field multiferroic antenna. The antenna uses a piezoelectric lead-zirconate-titanate stack to apply a time varying strain to a magnetoelastic iron gallium Fe80.77Ga19.23 (FeGa)