Spin-wave excitation modes in thick vortex-state circular ferromagnetic nanodots
(2016)
Journal Article
Verba, R., Hierro-Rodriguez, A., Navas, D., Ding, J., Liu, X., Adeyeye, A., …Kakazei, G. (2016). Spin-wave excitation modes in thick vortex-state circular ferromagnetic nanodots. Physical Review B, 93(21), https://doi.org/10.1103/physrevb.93.214437
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Ferromagnetic resonance study of interface coupling for spin waves in narrow NiFe/Ru/NiFe multilayer nanowires (2016)
Journal Article
Lupo, P., Haghshenasfard, Z., Cottam, M., & Adeyeye, A. (2016). Ferromagnetic resonance study of interface coupling for spin waves in narrow NiFe/Ru/NiFe multilayer nanowires. Physical Review B, 94(21), https://doi.org/10.1103/physrevb.94.214431
Direct observation of configurational anisotropy in coupled magnetic disk cluster using micro-focused Brillouin light scattering spectroscopy (2016)
Journal Article
Shimon, G., & Adeyeye, A. (2016). Direct observation of configurational anisotropy in coupled magnetic disk cluster using micro-focused Brillouin light scattering spectroscopy. Applied Physics Letters, 109(3), https://doi.org/10.1063/1.4959550
Collective spin excitations in bicomponent magnonic crystals consisting of bilayer permalloy/Fe nanowires (2016)
Journal Article
Gubbiotti, G., Tacchi, S., Madami, M., Carlotti, G., Yang, Z., Ding, J., …Kostylev, M. (2016). Collective spin excitations in bicomponent magnonic crystals consisting of bilayer permalloy/Fe nanowires. Physical Review B, 93(18), https://doi.org/10.1103/physrevb.93.184411
Artificial metamaterials for reprogrammable magnetic and microwave properties (2016)
Journal Article
Haldar, A., & Adeyeye, A. O. (2016). Artificial metamaterials for reprogrammable magnetic and microwave properties. Applied Physics Letters, 108(2), https://doi.org/10.1063/1.4939852
Nanopatterning-Enhanced Sensitivity and Response Time of Dynamic Palladium/Cobalt/Palladium Hydrogen Gas Sensors (2016)
Journal Article
Lueng, C., Lupo, P., Metaxas, P. J., Kostylev, M., & Adeyeye, A. O. (2016). Nanopatterning-Enhanced Sensitivity and Response Time of Dynamic Palladium/Cobalt/Palladium Hydrogen Gas Sensors. Advanced Materials Technologies, 1(5), https://doi.org/10.1002/admt.201600097
Robust electric-field tunable opto-electrical behavior in Pt-NiO-Pt planar structures (2016)
Journal Article
Rebello, A., & Adeyeye, A. (2016). Robust electric-field tunable opto-electrical behavior in Pt-NiO-Pt planar structures. Scientific Reports, 6(1), https://doi.org/10.1038/srep28007
Deterministic Control of Magnetization Dynamics in Reconfigurable Nanomagnetic Networks for Logic Applications (2016)
Journal Article
Haldar, A., & Adeyeye, A. O. (2016). Deterministic Control of Magnetization Dynamics in Reconfigurable Nanomagnetic Networks for Logic Applications. ACS Nano, 10(1), https://doi.org/10.1021/acsnano.5b07849
Magnetostatic spin wave modes in trilayer nanowire arrays probed using ferromagnetic resonance spectroscopy (2016)
Journal Article
Zhou, X., & Adeyeye, A. (2016). Magnetostatic spin wave modes in trilayer nanowire arrays probed using ferromagnetic resonance spectroscopy. Physical Review B, 94(5), https://doi.org/10.1103/physrevb.94.054410
Dynamic behavior of Ni80Fe20 nanowires with controlled periodic width modulation (2016)
Journal Article
Xiong, L., & Adeyeye, A. (2016). Dynamic behavior of Ni80Fe20 nanowires with controlled periodic width modulation. Applied Physics Letters, 108(26), https://doi.org/10.1063/1.4954868
Bias field free tunability of microwave properties based on geometrically controlled isolated permalloy nanomagnets (2016)
Journal Article
Haldar, A., & Adeyeye, A. O. (2016). Bias field free tunability of microwave properties based on geometrically controlled isolated permalloy nanomagnets. Applied Physics Letters, 108(16), https://doi.org/10.1063/1.4947092
Resonance-Based Detection of Magnetic Nanoparticles and Microbeads Using Nanopatterned Ferromagnets (2016)
Journal Article
Sushruth, M., Ding, J., Duczynski, J., Woodward, R. C., Begley, R. A., Fangohr, H., …Metaxas, P. J. (2016). Resonance-Based Detection of Magnetic Nanoparticles and Microbeads Using Nanopatterned Ferromagnets. Physical Review Applied, 6(4), https://doi.org/10.1103/physrevapplied.6.044005
Unconventional spin distributions in thick Ni80Fe20nanodisks (2016)
Journal Article
Kumar, D., Lupo, P., Haldar, A., & Adeyeye, A. (2016). Unconventional spin distributions in thick Ni80Fe20nanodisks. Applied Physics Letters, 108(19), https://doi.org/10.1063/1.4948972
Reconfigurable waveguide for spin wave transmission (2016)
Patent
Haldar, A., Kumar, D., & Adeyeye, A. (2019). Reconfigurable waveguide for spin wave transmission
Nanomagnetic network structures and a method of reconfigurable operation based on magnetization dynamics (2016)
Patent
Haldar, A., & Adeyeye, A. (2017). Nanomagnetic network structures and a method of reconfigurable operation based on magnetization dynamics
A reconfigurable waveguide for energy-efficient transmission and local manipulation of information in a nanomagnetic device (2016)
Journal Article
Haldar, A., Kumar, D., & Adeyeye, A. O. (2016). A reconfigurable waveguide for energy-efficient transmission and local manipulation of information in a nanomagnetic device. Nature Nanotechnology, 11(5), 437-443. https://doi.org/10.1038/nnano.2015.332
Large Area Artificial Spin Ice and Anti-Spin Ice Ni80 Fe20 Structures: Static and Dynamic Behavior (2016)
Journal Article
Zhou, X., Chua, G., Singh, N., & Adeyeye, A. O. (2016). Large Area Artificial Spin Ice and Anti-Spin Ice Ni80 Fe20 Structures: Static and Dynamic Behavior. Advanced Functional Materials, 26(9), 1437-1444. https://doi.org/10.1002/adfm.201505165Artificial spin ice has been the subject of extensive investigation in the last few years due to advances in nanotechnology and characterization techniques. So far, most of the studies have been limited to local probe of small area magnetic elements... Read More about Large Area Artificial Spin Ice and Anti-Spin Ice Ni80 Fe20 Structures: Static and Dynamic Behavior.