225. "Ferromagnetic resonance and damping in granular Co-Cr films with perpendicular anisotropy," P. Krivosik, S. S. Kalarickal, N. Mo, S. Wu, and C. E. Patton, Appl. Phys. Lett. 95, 052509 (2009).
224. "Electric field tunable 60 GHz ferromagnetic resonance response in barium ferrite-barium strontium titanate multiferroic heterostructures," Y. Y. Song, J. Das, P. Krivosik, N. Mo, and C. E. Patton, Appl. Phys. Lett. 94, 182505 (2009).
223. "Three-magnon splitting and confluence processes for spin-wave excitations in yttrium iron garnet films: Wave vector selective Brillouin light scattering measurements and analysis," C. L. Ordóñez-Romero, B. A. Kalinikos, P. Krivosik, W. Tong, P. Kabos, and C. E. Patton, Phys. Rev. B 79, 144428 (2009). selected as "PRB Editors' Suggestions" paper
222. "Ferromagnetic resonance linewidth mechanisms in polycrystalline ferrites: Role of grain-to-grain and grain-boundary two-magnon scattering processes," S. S. Kalarickal, N. Mo, P. Krivosik, and C. E. Patton, Phys. Rev. B 79, 094427 (2009).
221. "Electric-field-tunable low loss multiferroic ferrimagnetic-ferroelectric heterostructures," J. Das, Y. Y. Song, N. Mo, P. Krivosik, C. E. Patton, Adv. Mater. DOI: 10.1002/adma.200803376 (2009).
220. "In-plane c-axis oriented barium ferrite films with self-bias and low microwave loss," Y. Y. Song, J. Das, Z. Wang, W. Tong, and C. E. Patton, Appl. Phys. Lett. 93, 172503 (2008).
219. "Spin wave propagation in spatially nonuniform magnetic fields," K. R. Smith, M. J. Kabatek, P. Krivosik, and M. Wu, J. Appl. Phys. 104, 043911 (2008).
218. "Perspective: Local ferromagnetic resonance measurement techniques: "Invited Review Article: Microwave spectroscopy based on scanning thermal microscopy: Resolution in the nanometer range" [Rev. Sci. Instrum. 79, 041101 (2008)]," N. Mo and C. E. Patton, Rev. Sci. Instr. 79, 040901 (2008).
217. "Origins of the damping in perpendicular media: Three component ferromagnetic resonance linewidth in Co-Cr-Pt alloy films," N. Mo, J. Hohlfeld, M. ul Islam, C. S. Brown, E. Girt, P. Krivosik, W. Tong, A. Rebei. and C. E. Patton, Appl. Phys. Lett. 92, 022506 (2008).
216. "Microwave damping in polycrystalline Fe-Ti-N films: Physical mechanisms and correlations with composition and structure," S. S. Kalarickal, P. Krivosik, J. Das, K. S. Kim, and C. E. Patton, Phys. Rev. B 77, 054427 (2008).
215. "High precision metrology based microwave effective linewidth measurement technique," N. Mo, J. J. Green, B. A. Beitscher, and C. E. Patton, Rev. Sci. Instr. 78, 113903 (2007).
214. "Multifunctional dual-tunable low loss ferrite-ferroelctric heterostructures for microwave devices," J. Das, B. A. Kalinikos, A. R. Barman, and C. E. Patton, Appl. Phys. Lett. 91, 172516 (2007).
213. "Intergranular interactions and thermal stability in Fe-Ti-N thin films," K. Srinivasan, C. S. Brown, J. Das, and C. E. Patton IEEE Trans. Magn. 43, No. 9, 3661 (2007).
212. "Cloning and trapping of magnetostatic spin-wave pulses by parametric pumping," K. R. Smith, V. I. Vasyuchka, M. Wu, G. A. Melkov, and C. E. Patton Phys. Rev. B 76, 054412 (2007).
211. "Ferromagnetic resonance saturation and second order Suhl spin wave instability processes in thin Permalloy films," H. M. Olson, P. Krivosik, K. Srinivasan, and C. E. Patton, J. Appl. Phys. 102, 023904 (2007).
210. "Direct detection of nonlinear ferromagnetic resonance in thin films by the magneto-optical Kerr effect," Th. Gerrits, P. Krivosik, M. L. Schneider, C. E. Patton, and T. J. Silva, Phys. Rev. Lett. 98, 207602 (2007).
209. "Magnetic properties and structural implications for nanocrystalline Fe-Ti-N thin films," J. Das, S. S. Kalarickal, K. S. Kim, and C. E. Patton, Phys. Rev. B 75, 094435 (2007).
208. "Hamiltonian formalism for two magnon scattering microwave relaxation: Theory and applications," P. Krivosik, N. Mo, S. Kalarickal, and C. E. Patton, J. Appl. Phys. 101, 083901 (2007).
207. "Experimental observation of Fermi-Pasta-Ulam recurrence in a nonlinear feedback ring system," M. Wu and C. E. Patton, Phys. Rev. Lett. 98, 047202 (2007).
206. "The low field microwave effective linewidth in polycrystalline ferrites," N. Mo, J. J. Green, P. Krivosik, and C. E. Patton, J. Appl. Phys. 101, 023914 (2007).
205. "Random generation of coherent solitary waves from incoherent waves," M. Wu, P. Krivosik, B. A. Kalinikos, and C. E. Patton, Phys. Rev. Lett. 96, 227202 (2006).
204. "Observation of spin-wave soliton fractals in magnetic film active feedback rings," M. Wu, B. A. Kalinikos, L. D. Carr, and C. E. Patton, Phys. Rev. Lett. 96, 187202 (2006).
203. "Static and high frequency magnetic and dielectric properties of ferrite-ferroelectric composite materials," S. S. Kalarickal, D. Ménard, J. Das, C. E. Patton, X. Zhang, L. C. Sengupta, and S. Sengupta, J. Appl. Phys. 100, 084905 (2006).
202. "Ferromagnetic resonance linewidth in metallic thin films: Comparison of measurement methods," S. S. Kalarickal, P. Krivosik, M. Wu, C. E. Patton, M. L. Schneider, P. Kabos, T. J. Silva, and J. P. Nibarger, J. Appl. Phys. 99, 093909 (2006).
201. "Fast pulse-excited spin waves in yttrium iron garnet thin films," M. Wu, B. A. Kalinikos, P. Krivosik, and C. E. Patton, J. Appl. Phys. 99, 013901 (2006).
200. "Envelope solitons in a medium with strong nonlinear damping," Y. K. Fetisov, C. E. Patton, and V. T. Synogach, JETP Lett. 83, 488 (2006).
199. "Nonlinear ferrite film microwave processing for advanced communications - physics and devices," C. E. Patton, M. Wu, K. R. Smith, and V. I. Vasyuchka, Ferroelectrics 342, 101 (2006).
198. "Self-generation of chaotic solitary spin wave pulses in magnetic film active feedback rings," M. Wu, B. A. Kalinikos, and C. E. Patton, Phys. Rev. Lett. 95, 237202 (2005).
197. "Excitation of bright and dark envelope solitons for magnetostatic waves with attractive nonlinearity," M. M. Scott, M. P. Kostylev, B. A. Kalinikos, and Carl E. Patton, Phys. Rev. B 71, 174440 (2005).
196. "Pulsed laser-deposited single-crystal LiZn-ferrite films with low microwave loss," Y. Y. Song, M. S. Grinolds, P. Krivosik, and C. E. Patton, J. Appl. Phys. 97, 103516 (2005).
195. "High-field microwave effective linewidth in polycrystalline ferrites: Physical origins and intrinsic limits," N. Mo, Y. Y. Song, and C. E. Patton, J. Appl. Phys. 97, 093901 (2005).
194. "Generation of dark and bright spin wave envelope soliton trains through self-modulational instability in magnetic films," M. Wu, B. A. Kalinikos, and C. E. Patton, Phys. Rev. Lett. 93, 157207 (2004).
193. "Spatial evolution of multipeaked microwave magnetic envelope solitons in yttrium iron garnet thin films," M. Wu, M. A. Kraemer, M. M. Scott, C. E. Patton, and B. A. Kalinikos, Phys. Rev. B 70, 054402 (2004).
192. "Nonlinear damping of high-power magnetostatic waves in yttrium-iron-garnet films," M. M. Scott, C. E. Patton, M. P. Kostylev, and B. A. Kalinikos, J. Appl. Phys. 95, No. 11, 6294 (2004).
191. "High power ferromagnetic resonance and spin wave instability processes in Permalloy thin films," S. Y. An, P. Krivosik, M. A. Kraemer, H. M. Olson, A. V. Nazarov, and C. E. Patton, J. Appl. Phys. 96, No. 3, 1572 (2004).
190. "Thermal microwave foldover and bistability in ferromagnetic resonance," Y. K. Fetisov and C. E. Patton, IEEE Trans. Magn. 40, No. 2, 473 (2004).
189. "Classical model of extrinsic ferromagnetic resonance linewidth in ultrathin films," R. D. McMichael and P. Krivosik, IEEE Trans. Magn. 40, No. 1, 2 (2004).
188. "Brillouin light scattering analysis of three magnon splitting processes in yttrium iron garnet films," C. Mathieu, V. T. Synogatch, and C. E. Patton, Phys. Rev. B. 67, 104402 (2003).
187. "Effect of the large magnetocrystalline anisotropy on the spin wave linewidth in Zn-Y hexagonal ferrite," A. V. Nazarov and C. E. Patton, J. Appl. Phys. 93, 9195 (2003).
186. "Near theoretical microwave loss in hot isostatic pressed (hipped) polycrystalline yttrium iron garnet," A. V. Nazarov, D. Ménard, J. J. Green, and C. E. Patton, J. Appl. Phys. 94, 7227 (2003).
185. "Spatial recurrence for nonlinear magnetostatic wave excitations," M. M. Scott, B. A. Kalinikos, and C. E. Patton, J. Appl. Phys. 95, 5877 (2003).
184. "Optimized pulsed laser deposited barium ferrite thin films with narrow ferromagnetic resonance linewidths," Y. Y. Song, S. Kalarickal, and C. E. Patton, J. Appl. Phys. 94, 5103 (2003).
183. "Theoretical analysis of nonlinear pulse propagation in ferrite-dielectric-metal structures based on the nonlinear Schrödinger equation with high order terms," A. S. Kindyak, M. M. Scott, and C. E. Patton, J. Appl. Phys. 93, 4739 (2003).
182. "Magnetostatic spin wave solitons in obliquely magnetized yttrium iron garnet films," Y. K. Fetisov and C. E. Patton, Radioteknika i Elektronika 48, 210 (2003), in Russian [J. Comm. Tech. and Electronics 48, 185-195 (2003)].
181. "Frequency and temperature dependence of the ferromagnetic resonance linewidth in single crystal platelets and pulsed laser deposited films of barium ferrite," S. V. Lebedev, C. E. Patton, M. A. Wittenauer, L. V. Saraf, and R. Ramesh, J. Appl. Phys. 91, 4426 (2002).
180. "High power microwave properties of Zn-Y hexagonal ferrite - parallel pumping size effects," A. V. Nazarov, R. G. Cox, and C. E. Patton, J. Appl. Phys. 92, 3890 (2002).
179. "General spin wave instability theory for anisotropic ferromagnetic insulators at high microwave power levels," A. V. Nazarov, C. E. Patton, R. G. Cox, L. Chen, and P. Kabos, J. Magn. Magn. Mat. 248, 164 (2002).
178. "Spin wave instability in single crystal Zn-Y hexagonal ferrite at 8.93 GHz," R. G. Cox, C. E. Patton, M. A. Wittenauer, P. Kabos, and L. Chen, J. Appl. Phys. 89, 4454 (2001).
177. "General spin wave instability theory," A. V. Nazarov, R. G. Cox, and C. E. Patton, IEEE Trans. Magn. 37, 2380 (2001).
176. "Self-generation of bright microwave magnetic envelope soliton trains in ferrite films through frequency filtering," M. M. Scott, B. A. Kalinikos, and C. E. Patton, Appl. Phys. Lett. 78, 970 (2001).
175. "Brillouin light scattering analysis of ultra short microwave pulse formation processes in yttrium iron garnet films," C. Mathieu, V. T. Synogach, and C. E. Patton, Ferrites: Proceedings of the Eighth International Conference on Ferrites (ICF8), Kyoto and Tokyo, Japan, 2000 (Japan Society of Powder Metallurgy, Kyoto, 2001), pp. 873-875.
174. "Time domain MOKE detection of spin wave modes and precession control for magnetization switching in ferrite films," M. Bauer, R. Lopusnik, H. Dötsch, B. A. Kalinikos, C. E. Patton, J. Fassbender, and B. Hillebrands, J. Magn. Magn. Mat. 226, 507 (2001).