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Year: 2014

  1. P. Gruszecki, J. Romero-Vivas, Y. S. Dadoenkova, N. N. Dadoenkova, I. L. Lyubchankii and M. Krawczyk. "Goos-Hänchen effect and bending of spin wave beams in thin magnetic films", Appl. Phys. Lett., Vol. 105. 2014, pp. 242406. [More] [Online version] [Bibtex] [RIS]
  2. M. Mruczkiewicz, E. S. Pavlov, S. Vysotskii, M. Krawczyk, Y. A. Filimonov and S. A. Nikitov. "Magnonic Bandgaps in Metalized 1-D YIG Magnonic Crystals", Magnetics, IEEE Transactions on, Vol. 50. 2014, pp. 2304103. [More] [Online version] [Bibtex] [RIS]
  3. J. W. Kłos, M. Krawczyk, Y. Dadoenkova, N. Dadoenkova and I. Lyubchanskii. "Spin Waves and Electromagnetic Waves in Photonic-Magnonic Crystals", Magnetics, IEEE Transactions on, Vol. 50. 2014, pp. 2504404. [More] [Online version] [Bibtex] [RIS]
  4. M. Mruczkiewicz, E. S. Pavlov, S. L. Vysotsky, M. Krawczyk, Y. A. Filimonov and S. A. Nikitov. "Observation of magnonic band gaps in magnonic crystals with nonreciprocal dispersion relation", Phys. Rev. B, Vol. 90. 2014, pp. 174416. [More] [Full text] [Bibtex] [RIS]
  5. A. E. Serebryannikov, P. Lalanne, A. Y. Petrov and E. Ozbay. "Wide-angle reflection-mode spatial filtering and splitting with photonic crystal gratings and single-layer rod gratings", Opt. Lett., Vol. 39. 2014. [More] [Full text] [Bibtex] [RIS]
  6. A. E. Serebryannikov, A. O. Cakmak, E. Colak, H. Caglayan, H. Kurt and E. Ozbay. "Multiple slow waves and relevant transverse transmission and confinement in chirped photonic crystals", Opt. Express, Vol. 22. 2014, pp. 21806. [More] [Full text] [Bibtex] [RIS]
  7. S. Pal et al. "Optically induced spin wave dynamics in [Co/Pd]8 antidot lattices with perpendicular magnetic anisotropy", Appl. Phys. Lett., Vol. 105. 2014, pp. 162408. [More] [Online version] [Bibtex] [RIS]
  8. J. W. Kłos, M. Krawczyk, I. L. Lyubchanskii, N. N. Dadoenkova and Y. S. Dadoenkova. "Photonic-magnonic crystals: Multifunctional periodic structures for magnonic and photonic applications", J. Appl. Phys., Vol. 115. 2014, pp. 174311. [More] [Online version] [Bibtex] [RIS]
  9. M. Mruczkiewicz and M. Krawczyk. "Nonreciprocal dispersion of spin waves in ferromagnetic thin films covered with a finite-conductivity metal", J. Appl. Phys., Vol. 115. 2014, pp. 113909. [More] [Online version] [Bibtex] [RIS]
  10. M. Krawczyk and D. Grundler. "Review and prospects of magnonic crystals and devices with reprogrammable band structure", J. Phys.: Condens. Matter, Vol. 26. 2014, pp. 123202. [More] [Online version] [Bibtex] [RIS]
  11. S. Mamica, J. -. Lévy and M. Krawczyk. "Effects of the competition between the exchange and dipolar interactions in the spin-wave spectrum of two-dimensional circularly magnetized nanodots", J. Phys. D, Vol. 47. 2014, pp. 015003. [More] [Online version] [Bibtex] [RIS]
  12. D. Kumar, J. W. Kłos, M. Krawczyk and A. Barman. "Magnonic band structure, complete bandgap, and collective spin wave excitation in nanoscale two-dimensional magnonic crystals", J. Appl. Phys., Vol. 115. 2014, pp. 043917. [More] [Online version] [Bibtex] [RIS]
  13. J. W. Kłos, D. Kumar, M. Krawczyk and A. Barman. "Influence of structural changes in a periodic antidot waveguide on the spin-wave spectra", Phys. Rev. B, Vol. 89. 2014, pp. 014406. [More] [Online version] [Bibtex] [RIS]

Year: 2013

  1. V. Roboud et al. "Lasing in nanoimprinted two-dimensional photonic crystal band-edge lasers", Appl. Phys. Lett., Vol. 102, February, 2013, pp. 073101. [More] [Online version] [Bibtex] [RIS]
  2. S. Mamica. "Spin-wave spectra and stability of the in-plane vortex state in two-dimensional magnetic nanorings", J. Appl. Phys., Vol. 114. 2013, pp. 233906. [More] [Online version] [Bibtex] [RIS]
  3. M. Krawczyk et al. "Magnonic band structures in two-dimensional bi-component magnonic crystals with in-plane magnetization", J. Phys. D: Appl. Phys., Vol. 46. 2013, pp. 495003. [More] [Online version] [Bibtex] [RIS]
  4. M. Mruczkiewicz et al. "Nonreciprocity of spin waves in metallized", New J. Phys., Vol. 15. 2013, pp. 113023. [More] [Online version] [Bibtex] [RIS]
  5. S. Mamica. "Tailoring of the partial magnonic gap in three-dimensional magnetoferritin-based magnonic crystals", J. Appl. Phys., Vol. 114. 2013, pp. 043912. [More] [Online version] [Bibtex] [RIS]
  6. P. Depondt, J.-C. Lévy and S. Mamica. "Vortex polarization dynamics in a square magnetic nanodot", J. Phys.: Condens. Matter, Vol. 25. 2013, pp. 466001. [More] [Online version] [Bibtex] [RIS]
  7. G. Scherrer et al. "Photonic crystal carpet: Manipulating wave fronts in the near field at 1.55 μm_1", Phys. Rev. B, Vol. 88. 2013, pp. 1151. [More] [Online version] [Bibtex] [RIS]
  8. J. W. Kłos, D. Kumar, M. Krawczyk and A. Barman. "Magnonic Band Engineering by Intrinsic and Extrinsic Mirror Symmetry Breaking in Antidot Spin-Wave Waveguides", Scientific Reports, Vol. 3. 2013, pp. 2444. [More] [Online version] [Bibtex] [RIS]
  9. M. Madami et al. "Spin Wave Dispersion in Permalloy Antidot Array With Alternating Holes Diameter", IEEE Transactions on Magnetics, Vol. 49. 2013, pp. 3093. [More] [Online version] [Bibtex] [RIS]
  10. J. W. Kłos and V. S. Tkachenko. "Symmetry-related criteria for the occurrence of defect states in magnonic superlattices", Journal of Applied Physics, Vol. 113. 2013, pp. 133907. [More] [Online version] [Bibtex] [RIS]
  11. M. Mruczkiewicz, M. Krawczyk, V. K. Skaharov, Y. V. Khivintsev, Y. A. Filimonov and S. A. Nikitov. "Standing spin waves in magnonic crystals", J. Appl. Phys., Vol. 113. 2013, pp. 093908. [More] [Online version] [Bibtex] [RIS]
  12. S. Mamica. "Stabilization of the in-plane vortex state in two-dimensional circular nanorings", J. Appl. Phys., Vol. 113. 2013, pp. 093901. [More] [Full text] [Bibtex] [RIS]
Results 126 - 150 of 179