Nan Mo, Ph.D.

Affiliations: 
2006 Colorado State University, Fort Collins, CO 
Area:
Condensed Matter Physics
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"Nan Mo"
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Carl E. Patton grad student 2006 Colorado State
 (Microwave effective linewidth in polycrystalline ferrites: Precision measurements and new interpretations.)
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Lu L, Young J, Wu M, et al. (2012) Tuning of magnetization relaxation in ferromagnetic thin films through seed layers Applied Physics Letters. 100
Kalarickal SS, Mo N, Krivosik P, et al. (2009) Ferromagnetic resonance linewidth mechanisms in polycrystalline ferrites: Role of grain-to-grain and grain-boundary two-magnon scattering processes Physical Review B - Condensed Matter and Materials Physics. 79
Krivosik P, Kalarickal SS, Mo N, et al. (2009) Ferromagnetic resonance and damping in granular Co-Cr films with perpendicular anisotropy Applied Physics Letters. 95
Song YY, Das J, Krivosik P, et al. (2009) Electric field tunable 60 GHz ferromagnetic resonance response in barium ferrite-barium strontium titanate multiferroic heterostructures Applied Physics Letters. 94
Das J, Song YY, Mo N, et al. (2009) Electric-field-tunable low loss multiferroic ferrimagnetic-ferroelectric heterostructures Advanced Materials. 21: 2045-2049
Mo N, Patton CE. (2008) 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)]. The Review of Scientific Instruments. 79: 040901
Mo N, Green JJ, Beitscher BA, et al. (2007) High precision metrology based microwave effective linewidth measurement technique. The Review of Scientific Instruments. 78: 113903
Krivosik P, Mo N, Kalarickal S, et al. (2007) Hamiltonian formalism for two magnon scattering microwave relaxation: Theory and applications Journal of Applied Physics. 101
Mo N, Green JJ, Krivosik P, et al. (2007) The low field microwave effective linewidth in polycrystalline ferrites Journal of Applied Physics. 101
Mo N, Patton CE. (2006) Pauli matrix based formulation of classical spin wave dispersion theory Intermag 2006 - Ieee International Magnetics Conference. 833
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