Staff profile
Professor Adekunle Adeyeye
Principal
Affiliation | Telephone |
---|---|
Principal of Trevelyan College | +44 (0) 191 33 47042 |
Professor in the Department of Physics | +44 (0) 191 33 42321 |
Biography
Brief Biography
Adekunle joined Durham University as the Principal of Trevelyan College and Professor of Physics in January 2020. He graduated with a First Class Honors Degree in Physics from the University of Ilorin, Nigeria (1990), MPhil (Microelectronic Engineering and semiconductor Physics), and Ph.D. degrees from the University of Cambridge, in 1993 and 1996, respectively. He was elected a Junior Research Fellow at Trinity College, the University of Cambridge in 1996. He then worked as a Senior Research Engineer at the Data Storage Institute, Singapore in 1997, before returning to Cambridge to take up his fellowship at the Nanoscale Science Laboratory. He joined the Department of Electrical & Computer Engineering, National University of Singapore (NUS) as an Assistant Professor in 2000. He was promoted to Associate Professor with tenure in 2006 and Full Professor in July 2012. He was the founding Master of the Ridge View Residential College at NUS.
His research focuses on the fundamental understanding and exploration of nanomagnets in non-volatile memory technologies. He has conducted pioneering research work in the field of nanomagnetism. He has won many awards including being named one of the top 100 young innovators in the world by TR100, an award-winning MIT magazine on technology. In 2013 he was selected Institute of Electrical and Electronic Engineering Magnetics Society Distinguished Lecturer. Adekunle is a Fellow of the American Physical Society, Fellow of the Institute of Physics, Fellow of the Institute of Nanotechnology, and a Royal Society Wolfson Fellow.
Research interests
- Nanotechnology & Spintronics, Magnonics and Spin Wave Devices, Magnetic Biosensors
- Advanced Nanofabrication Techniques, Functional Nanomaterials for Spintronic Applications
Publications
Chapter in book
- Designer Nanomagnets: Static and Dynamic Responses
Talapatra, A., & Adeyeye, A. O. (2024). Designer Nanomagnets: Static and Dynamic Responses. In Nanomagnets as Dynamical Systems (1-32). Springer Nature. https://doi.org/10.1007/978-3-031-73191-4_1
Journal Article
- Impact of thickness and saturation direction over magnetostatic mode energies and profiles in Ni80Fe20 antidots
Chiroli, S., Faurie, D., Adeyeye, A. O., & Zighem, F. (2025). Impact of thickness and saturation direction over magnetostatic mode energies and profiles in Ni80Fe20 antidots. Journal of Physics D: Applied Physics, 58(1), Article 015001. https://doi.org/10.1088/1361-6463/ad7d9f - Magnetization dynamics in single and trilayer nanowires.
Kuchibhotla, M., Haldar, A., & Adeyeye, A. O. (2024). Magnetization dynamics in single and trilayer nanowires. Journal of Physics: Condensed Matter, 36(45), Article 455808. https://doi.org/10.1088/1361-648X/ad6c9a - Tailoring magnon modes by extending square, kagome, and trigonal spin ice lattices vertically via interlayer coupling of trilayer nanomagnets.
de Rojas, J., Atkinson, D., & Adeyeye, A. O. (2024). Tailoring magnon modes by extending square, kagome, and trigonal spin ice lattices vertically via interlayer coupling of trilayer nanomagnets. Journal of Physics: Condensed Matter, 36(41), Article 415805. https://doi.org/10.1088/1361-648X/ad5d3f - Collective spin waves in RKKY interlayer-coupled Ni 80 Fe 20 /Ru/Ni 80 Fe 20 nanowire arrays
Adeyeye, A. O., Hussain, B., Cottam, M. G., & Gubbiotti, G. (2024). Collective spin waves in RKKY interlayer-coupled Ni 80 Fe 20 /Ru/Ni 80 Fe 20 nanowire arrays. Journal of Physics: Condensed Matter, 36(39), Article 395801. https://doi.org/10.1088/1361-648x/ad5923 - Effect of width and thickness on propagating spin waves in permalloy microstripe waveguides
Devapriya, M. S., Aditya, N. S., Kuchibhotla, M., Adeyeye, A. O., & Haldar, A. (2024). Effect of width and thickness on propagating spin waves in permalloy microstripe waveguides. Journal of Applied Physics, 136(9), Article 093905. https://doi.org/10.1063/5.0223672 - Dominant higher-order vortex gyromodes in circular magnetic nanodots
Bondarenko, A. V., Bunyaev, S. A., Shukla, A. K., Apolinario, A., Singh, N., Navas, D., Guslienko, K. Y., Adeyeye, A. O., & Kakazei, G. N. (2024). Dominant higher-order vortex gyromodes in circular magnetic nanodots. Nanoscale Horizons, 9(9), 1381-1590. https://doi.org/10.1039/d4nh00145a - Spin Textures in High-Aspect-Ratio Ni80Fe20 Nanodisk Arrays: Implications for Next-Generation Spintronic Devices
Devapriya, M. S., Zhou, X., Haldar, A., & Adeyeye, A. O. (2024). Spin Textures in High-Aspect-Ratio Ni80Fe20 Nanodisk Arrays: Implications for Next-Generation Spintronic Devices. ACS Applied Nano Material, 7(13), 15096–15103. https://doi.org/10.1021/acsanm.4c01857 - Mapping the transition from quasi-2D to 3D spin textures in NiFe nanomagnets
Scott, J. R., Atkinson, D., & Adeyeye, A. O. (2024). Mapping the transition from quasi-2D to 3D spin textures in NiFe nanomagnets. Applied Physics Letters, 124(22), https://doi.org/10.1063/5.0212429 - Coherent and Dissipative Coupling in a Magnetomechanical System
Carrara, P., Brioschi, M., Silvani, R., Adeyeye, A. O., Adeyeye, A., Panaccione, G., Gubbiotti, G., Rossi, G., & Cucini, R. (2024). Coherent and Dissipative Coupling in a Magnetomechanical System. Physical Review Letters, 132(21), Article 216701. https://doi.org/10.1103/PhysRevLett.132.216701 - Investigation of magnetization dynamics in trilayer width-modulated nanowires
Kuchibhotla, M., Haldar, A., & Adeyeye, A. O. (2024). Investigation of magnetization dynamics in trilayer width-modulated nanowires. Journal of Applied Physics, 135(10), Article 103903. https://doi.org/10.1063/5.0191447 - Tunable 2-D magnonic crystals: effect of packing density
Tian, C., & Adeyeye, A. O. (2024). Tunable 2-D magnonic crystals: effect of packing density. Nanoscale, 16(9), 4858-4865. https://doi.org/10.1039/d3nr05582e - Tuning magnon spectra via interlayer coupling in pseudo-3D nanostructured artificial spin ice arrays
de Rojas, J., Atkinson, D., & Adeyeye, A. O. (2023). Tuning magnon spectra via interlayer coupling in pseudo-3D nanostructured artificial spin ice arrays. Applied Physics Letters, 123(23), Article 232407. https://doi.org/10.1063/5.0177447 - Magnetization dynamics of elastically strained nanostructures studied by coupled micromagnetic-mechanical simulations
Chiroli, S., Faurie, D., Haboussi, M., Adeyeye, A. O., & Zighem, F. (2023). Magnetization dynamics of elastically strained nanostructures studied by coupled micromagnetic-mechanical simulations. Physical Review B, 108, Article 024406. https://doi.org/10.1103/PhysRevB.108.024406 - Elongation of skyrmions by Dzyaloshinskii–Moriya interaction in helimagnetic films
Dai, Y.-Y., Wang, H., Yang, T., Adeyeye, A. O., & Zhang, Z.-D. (2022). Elongation of skyrmions by Dzyaloshinskii–Moriya interaction in helimagnetic films. Rare Metals, 41(9), 3150-3159. https://doi.org/10.1007/s12598-022-02023-z - Tuning spin wave modes in yttrium iron garnet films with stray fields
Chaudhuri, U., Singh, N., Mahendiran, R., & Adeyeye, A. O. (2022). Tuning spin wave modes in yttrium iron garnet films with stray fields. Nanoscale, 14(33), 12022 - 12029. https://doi.org/10.1039/d2nr00618a - Engineering spin wave spectra in thick Ni80Fe20 rings by using competition between exchange and dipolar fields
Zhou, X., Tartakovskaya, E., Kakazei, G., & Adeyeye, A. (2021). Engineering spin wave spectra in thick Ni80Fe20 rings by using competition between exchange and dipolar fields. Physical Review B, 104(21), Article 214402. https://doi.org/10.1103/physrevb.104.214402 - Prospects toward flexible magnonic systems
Faurie, D., Adeyeye, A., & Zighem, F. (2021). Prospects toward flexible magnonic systems. Journal of Applied Physics, 130(15), Article 150901. https://doi.org/10.1063/5.0055976 - The 2021 Magnonics Roadmap
Barman, A., Gubbiotti, G., Ladak, S., Adeyeye, A. O., Krawczyk, M., Gräfe, J., Adelmann, C., Cotofana, S., Naeemi, A., Vasyuchka, V. I., Hillebrands, B., Nikitov, S., Yu, H., Grundler, D., Sadovnikov, A., Grachev, A. A., Sheshukova, S., Duquesne, J.-Y., Marangolo, M., Gyorgy, C., …Winklhofer, M. (2021). The 2021 Magnonics Roadmap. Journal of Physics: Condensed Matter, 33(41), Article 413001. https://doi.org/10.1088/1361-648x/abec1a - Magnetization dynamics of single and trilayer permalloy nanodots
Kuchibhotla, M., Talapatra, A., Haldar, A., & Adeyeye, A. O. (2021). Magnetization dynamics of single and trilayer permalloy nanodots. Journal of Applied Physics, 130(8), Article 083906. https://doi.org/10.1063/5.0060689 - Functional magnetic waveguides for magnonics
Haldar, A., & Adeyeye, A. O. (2021). Functional magnetic waveguides for magnonics. Applied Physics Letters, 119(6), Article 060501. https://doi.org/10.1063/5.0061528 - Differentiated Strain-Control of Localized Magnetic Modes in Antidot Arrays
Challab, N., Faurie, D., Haboussi, M., Adeyeye, A. O., & Zighem, F. (2021). Differentiated Strain-Control of Localized Magnetic Modes in Antidot Arrays. ACS Applied Materials and Interfaces, 13(25), 29906-29915. https://doi.org/10.1021/acsami.1c05582 - Coupled magnetic nanostructures: Engineering lattice configurations
Talapatra, A., & Adeyeye, A. (2021). Coupled magnetic nanostructures: Engineering lattice configurations. Applied Physics Letters, 118(17), Article 172404. https://doi.org/10.1063/5.0045235 - Platinum composition dependence of spin-orbit torque in (Fe0.8Mn0.2)1−xPtx single-layer ferromagnet
Luo, Z., Lu, L., Xie, H., Xu, Y., Chen, X., Talapatra, A., Adeyeye, A. O., Hua, Y., Li, X., & Wu, Y. (2020). Platinum composition dependence of spin-orbit torque in (Fe0.8Mn0.2)1−xPtx single-layer ferromagnet. Applied Physics Letters, 117(17), Article 172402. https://doi.org/10.1063/5.0023957 - Linear chains of nanomagnets: engineering the effective magnetic anisotropy
Talapatra, A., & Adeyeye, A. (2020). Linear chains of nanomagnets: engineering the effective magnetic anisotropy. Nanoscale, 12(40), 20933-20944. https://doi.org/10.1039/d0nr06026g - Non-uniform along thickness spin excitations in magnetic vortex-state nanodots
Kakazei, G., Guslienko, K., Verba, R., Ding, J., Liu, X., & Adeyeye, A. (2020). Non-uniform along thickness spin excitations in magnetic vortex-state nanodots. Low Temperature Physics, 46(8), Article 863. https://doi.org/10.1063/10.0001555 - Effect of exchange and dipolar interlayer interactions on the magnonic band structure of dense Fe/Cu/Py nanowires with symmetric and asymmetric layer widths
Gubbiotti, G., Zhou, X., Adeyeye, A., Varvaro, G., & Kostylev, M. (2020). Effect of exchange and dipolar interlayer interactions on the magnonic band structure of dense Fe/Cu/Py nanowires with symmetric and asymmetric layer widths. Physical Review B, 101(22), Article 224431. https://doi.org/10.1103/physrevb.101.224431 - Constraints on the Velocity and Spin Dependent Exotic Interaction at the Micrometer Range
Ding, J., Wang, J., Zhou, X., Liu, Y., Sun, K., Adeyeye, A. O., Fu, H., Ren, X., Li, S., Luo, P., Lan, Z., Yang, S., & Luo, J. (2020). Constraints on the Velocity and Spin Dependent Exotic Interaction at the Micrometer Range. Physical Review Letters, 124(16), Article 161801. https://doi.org/10.1103/physrevlett.124.161801 - Microwave assisted gating of spin wave propagation
Haldar, A., & Adeyeye, A. O. (2020). Microwave assisted gating of spin wave propagation. Applied Physics Letters, 116(16), Article 162403. https://doi.org/10.1063/5.0006945 - Direct mapping of spin wave modes of individual Ni80Fe20 nanorings
Tian, C., Chaudhuri, U., Singh, N., & Adeyeye, A. O. (2020). Direct mapping of spin wave modes of individual Ni80Fe20 nanorings. Nanotechnology, 31(14), Article 145714. https://doi.org/10.1088/1361-6528/ab662f - Magnetic Tunability of Permalloy Artificial Spin Ice Structures
Talapatra, A., Singh, N., & Adeyeye, A. (2020). Magnetic Tunability of Permalloy Artificial Spin Ice Structures. Physical Review Applied, 13(1), Article 014034. https://doi.org/10.1103/physrevapplied.13.014034 - Reconfigurable and self-biased magnonic metamaterials
Haldar, A., & Adeyeye, A. O. (2020). Reconfigurable and self-biased magnonic metamaterials. Journal of Applied Physics, 128(24), Article 240902. https://doi.org/10.1063/5.0033254 - Sensitivity of ferromagnetic resonance in PdCo alloyed films to hydrogen gas
Lueng, C., Lupo, P., Schefer, T., Metaxas, P., Adeyeye, A., & Kostylev, M. (2019). Sensitivity of ferromagnetic resonance in PdCo alloyed films to hydrogen gas. International Journal of Hydrogen Energy, 44(14), https://doi.org/10.1016/j.ijhydene.2019.01.234 - Interplay between intra- and inter-nanowires dynamic dipolar interactions in the spin wave band structure of Py/Cu/Py nanowires
Gubbiotti, G., Zhou, X., Haghshenasfard, Z., Cottam, M., Adeyeye, A., & Kostylev, M. (2019). Interplay between intra- and inter-nanowires dynamic dipolar interactions in the spin wave band structure of Py/Cu/Py nanowires. Scientific Reports, 9(1), https://doi.org/10.1038/s41598-019-40131-6 - Observation of phase dependent voltage signals in microwave spin pumping experiments
Chaudhuri, U., Mahendiran, R., & Adeyeye, A. O. (2019). Observation of phase dependent voltage signals in microwave spin pumping experiments. Applied Physics Letters, 115(2), https://doi.org/10.1063/1.5099365 - Route to form skyrmions in soft magnetic films
Navas, D., Verba, R., Hierro-Rodriguez, A., Bunyaev, S., Zhou, X., Adeyeye, A., Dobrovolskiy, O., Ivanov, B., Guslienko, K., & Kakazei, G. (2019). Route to form skyrmions in soft magnetic films. APL Materials, 7(8), https://doi.org/10.1063/1.5093371 - Magnetization-induced chirality in second harmonic generation response of U-shaped permalloy nanostructures
Kolmychek, I., Dolgikh, I., Zhou, X., Adeyeye, A., & Murzina, T. (2019). Magnetization-induced chirality in second harmonic generation response of U-shaped permalloy nanostructures. Physical Review B, 99(4), https://doi.org/10.1103/physrevb.99.045435 - Multicracking and Magnetic Behavior of Ni80Fe20 Nanowires Deposited onto a Polymer Substrate
Merabtine, S., Zighem, F., Faurie, D., Garcia-Sanchez, A., Lupo, P., & Adeyeye, A. O. (2018). Multicracking and Magnetic Behavior of Ni80Fe20 Nanowires Deposited onto a Polymer Substrate. Nano Letters, 18(5), 3199-3202. https://doi.org/10.1021/acs.nanolett.8b00922 - Reprogrammable magnonic band structure of layered permalloy/Cu/permalloy nanowires
Gubbiotti, G., Zhou, X., Haghshenasfard, Z., Cottam, M., & Adeyeye, A. (2018). Reprogrammable magnonic band structure of layered permalloy/Cu/permalloy nanowires. Physical Review B, 97(13), Article 134428. https://doi.org/10.1103/physrevb.97.134428 - Electrical detection of multiple ferromagnetic resonance modes in interlayer exchange coupled Fe20Ni80/Ru/Fe20Ni80 multilayers
Chaudhuri, U., Xiong, L., Mahendiran, R., & Adeyeye, A. O. (2018). Electrical detection of multiple ferromagnetic resonance modes in interlayer exchange coupled Fe20Ni80/Ru/Fe20Ni80 multilayers. Applied Physics Letters, 113(26), https://doi.org/10.1063/1.5054358 - Origin of relationship between ferromagnetic response and damage in stretched systems
Merabtine, S., Zighem, F., Garcia-Sanchez, A., Gunasekaran, V., Belmeguenai, M., Zhou, X., Lupo, P., Adeyeye, A., & Faurie, D. (2018). Origin of relationship between ferromagnetic response and damage in stretched systems. Scientific Reports, 8(1), https://doi.org/10.1038/s41598-018-32149-z - Spin-wave dynamics in artificial anti-spin-ice systems: Experimental and theoretical investigations
Mamica, S., Zhou, X., Adeyeye, A., Krawczyk, M., & Gubbiotti, G. (2018). Spin-wave dynamics in artificial anti-spin-ice systems: Experimental and theoretical investigations. Physical Review B, 98(5), https://doi.org/10.1103/physrevb.98.054405 - Isotropic transmission of magnon spin information without a magnetic field
Haldar, A., Tian, C., & Adeyeye, A. O. (2017). Isotropic transmission of magnon spin information without a magnetic field. Science Advances, 3(7), Article e1700638. https://doi.org/10.1126/sciadv.1700638 - Fragmentation and adhesion properties of CoFeB thin films on polyimide substrate
Faurie, D., Zighem, F., Garcia-Sanchez, A., Lupo, P., & Adeyeye, A. (2017). Fragmentation and adhesion properties of CoFeB thin films on polyimide substrate. Applied Physics Letters, 110(9), https://doi.org/10.1063/1.4977710 - Programmability of Co-antidot lattices of optimized geometry
Schneider, T., Langer, M., Alekhina, J., Kowalska, E., Oelschlägel, A., Semisalova, A., Neudert, A., Lenz, K., Potzger, K., Kostylev, M. P., Fassbender, J., Adeyeye, A. O., Lindner, J., & Bali, R. (2017). Programmability of Co-antidot lattices of optimized geometry. Scientific Reports, 7(1), https://doi.org/10.1038/srep41157 - Spin-wave nonreciprocity and magnonic band structure in a thin permalloy film induced by dynamical coupling with an array of Ni stripes
Mruczkiewicz, M., Graczyk, P., Lupo, P., Adeyeye, A., Gubbiotti, G., & Krawczyk, M. (2017). Spin-wave nonreciprocity and magnonic band structure in a thin permalloy film induced by dynamical coupling with an array of Ni stripes. Physical Review B, 96(10), https://doi.org/10.1103/physrevb.96.104411 - Magnetization dynamics of
Ni80Fe20
nanowires with continuous width modulation
nanowires with continuous width modulation. Physical Review B, 95(22), https://doi.org/10.1103/physrevb.95.224426 - Spin wave modes in out-of-plane magnetized nanorings
Zhou, X., Tartakovskaya, E., Kakazei, G., & Adeyeye, A. (2017). Spin wave modes in out-of-plane magnetized nanorings. Physical Review B, 96(2), https://doi.org/10.1103/physrevb.96.024446 - Tunable microwave properties of rhomboid shaped nanomagnet pairs
Tian, C., & Adeyeye, A. O. (2017). Tunable microwave properties of rhomboid shaped nanomagnet pairs. Applied Physics Letters, 111(26), https://doi.org/10.1063/1.5016599 - Large Area Artificial Spin Ice and Anti-Spin Ice Ni80 Fe20 Structures: Static and Dynamic Behavior
Zhou, X., Chua, G.-L., 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.201505165 - Bias field free tunability of microwave properties based on geometrically controlled isolated permalloy nanomagnets
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 - Artificial metamaterials for reprogrammable magnetic and microwave properties
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 - Deterministic Control of Magnetization Dynamics in Reconfigurable Nanomagnetic Networks for Logic Applications
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 - A reconfigurable waveguide for energy-efficient transmission and local manipulation of information in a nanomagnetic device
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 - Magnetostatic spin wave modes in trilayer nanowire arrays probed using ferromagnetic resonance spectroscopy
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 - Ferromagnetic resonance study of interface coupling for spin waves in narrow NiFe/Ru/NiFe multilayer nanowires
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 - Nanopatterning-Enhanced Sensitivity and Response Time of Dynamic Palladium/Cobalt/Palladium Hydrogen Gas Sensors
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 - Direct observation of configurational anisotropy in coupled magnetic disk cluster using micro-focused Brillouin light scattering spectroscopy
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 - Resonance-Based Detection of Magnetic Nanoparticles and Microbeads Using Nanopatterned Ferromagnets
Sushruth, M., Ding, J., Duczynski, J., Woodward, R. C., Begley, R. A., Fangohr, H., Fuller, R. O., Adeyeye, A. O., Kostylev, M., & 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
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 - Robust electric-field tunable opto-electrical behavior in Pt-NiO-Pt planar structures
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 - Dynamic behavior of Ni80Fe20 nanowires with controlled periodic width modulation
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 - Collective spin excitations in bicomponent magnonic crystals consisting of bilayer permalloy/Fe nanowires
Gubbiotti, G., Tacchi, S., Madami, M., Carlotti, G., Yang, Z., Ding, J., Adeyeye, A., & 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 - Spin-wave excitation modes in thick vortex-state circular ferromagnetic nanodots
Verba, R., Hierro-Rodriguez, A., Navas, D., Ding, J., Liu, X., Adeyeye, A., Guslienko, K., & 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 - Higher order vortex gyrotropic modes in circular ferromagnetic nanodots
Ding, J., Kakazei, G. N., Liu, X., Guslienko, K. Y., & Adeyeye, A. O. (2015). Higher order vortex gyrotropic modes in circular ferromagnetic nanodots. Scientific Reports, 4(1), https://doi.org/10.1038/srep04796 - Axially and radially quantized spin waves in thick permalloy nanodots
Zhou, X., Kumar, D., Maksymov, I., Kostylev, M., & Adeyeye, A. (2015). Axially and radially quantized spin waves in thick permalloy nanodots. Physical review B, 92(5), https://doi.org/10.1103/physrevb.92.054401 - Spin wave spectra in perpendicularly magnetized permalloy rings
Zhou, X., Ding, J., Kostylev, M., & Adeyeye, A. (2015). Spin wave spectra in perpendicularly magnetized permalloy rings. Applied Physics Letters, 106(11), https://doi.org/10.1063/1.4916029 - Angle-resolved spin wave band diagrams of square antidot lattices studied by Brillouin light scattering
Gubbiotti, G., Montoncello, F., Tacchi, S., Madami, M., Carlotti, G., Giovannini, L., Ding, J., & Adeyeye, A. (2015). Angle-resolved spin wave band diagrams of square antidot lattices studied by Brillouin light scattering. Applied Physics Letters, 106(26), https://doi.org/10.1063/1.4923271 - Resonant Enhancement of Magneto-Optical Activity Induced by Surface Plasmon Polariton Modes Coupling in 2D Magnetoplasmonic Crystals
Maccaferri, N., Inchausti, X., García-Martín, A., Cuevas, J. C., Tripathy, D., Adeyeye, A. O., & Vavassori, P. (2015). Resonant Enhancement of Magneto-Optical Activity Induced by Surface Plasmon Polariton Modes Coupling in 2D Magnetoplasmonic Crystals. ACS Photonics, 2(12), https://doi.org/10.1021/acsphotonics.5b00490 - Direct Detection of Static Dipolar Interaction on a Single Nanodisk Using Microfocused Brillouin Light Scattering Spectroscopy
Shimon, G., & Adeyeye, A. O. (2015). Direct Detection of Static Dipolar Interaction on a Single Nanodisk Using Microfocused Brillouin Light Scattering Spectroscopy. Advanced Electronic Materials, 1(5), https://doi.org/10.1002/aelm.201500070 - Large four-fold magnetic anisotropy in two-dimensional modulated Ni80Fe20 films
Kakazei, G., Liu, X., Ding, J., Golub, V., Salyuk, O., Verba, R., Bunyaev, S., & Adeyeye, A. (2015). Large four-fold magnetic anisotropy in two-dimensional modulated Ni80Fe20 films. Applied Physics Letters, 107(23), https://doi.org/10.1063/1.4936994 - Universal dependence of the spin wave band structure on the geometrical characteristics of two-dimensional magnonic crystals
Tacchi, S., Gruszecki, P., Madami, M., Carlotti, G., Kłos, J., Krawczyk, M., Adeyeye, A., & Gubbiotti, G. (2015). Universal dependence of the spin wave band structure on the geometrical characteristics of two-dimensional magnonic crystals. Scientific Reports, 5(1), https://doi.org/10.1038/srep10367 - Templates as Shadow Masks to Tune the Magnetic Anisotropy in Nanostructured CoCrPt/Ti Bilayer Films
Navas, D., Bi, L., Adeyeye, A. O., & Ross, C. A. (2015). Templates as Shadow Masks to Tune the Magnetic Anisotropy in Nanostructured CoCrPt/Ti Bilayer Films. Advanced Materials Interfaces, 2(7), https://doi.org/10.1002/admi.201400551 - Vortex chirality control in circular disks using dipole-coupled nanomagnets
Haldar, A., & Adeyeye, A. (2015). Vortex chirality control in circular disks using dipole-coupled nanomagnets. Applied Physics Letters, 106(3), https://doi.org/10.1063/1.4906142 - Giant moving vortex mass in thick magnetic nanodots
Guslienko, K., Kakazei, G., Ding, J., Liu, X., & Adeyeye, A. (2015). Giant moving vortex mass in thick magnetic nanodots. Scientific Reports, 5(1), https://doi.org/10.1038/srep13881 - Sensing magnetic nanoparticles using nano-confined ferromagnetic resonances in a magnonic crystal
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