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Year: 2020

  1. S. Pan et al. "Edge localization of spin waves in antidot multilayers with perpendicular magnetic anisotropy", Physical Review B, Vol. 101. 2020, pp. 014403. [More] [Online version] [Bibtex] [RIS]

Year: 2019

  1. G. Centała et al. "Influence of nonmagnetic dielectric spacers on the spin-wave response of one-dimensional planar magnonic crystals", Physical Review B, Vol. 100. 2019, pp. 224428. [More] [Online version] [Bibtex] [RIS]
  2. S. Mamica and M. Krawczyk. "Reversible tuning of omnidirectional band gaps in two-dimensional magnonic crystals by magnetic field and in-plane squeezing", Physical Review B, Vol. 100. 2019, pp. 214410. [More] [Online version] [Bibtex] [RIS]
  3. J. Kharlan et al. "Standing spin waves in perpendicularly magnetized triangular dots", Physical Review B, Vol. 100. 2019, pp. 184416. [More] [Online version] [Bibtex] [RIS]
  4. H. Hajian, A. Ghobadi, A. E. Serebryannikov, B. Butun, G. A. Vandenbosch and E. Ozbay. "Tunable infrared asymmetric light transmission and absorption via graphene hBN metamaterials", Journal of Applied Physics, Vol. 126. 2019, pp. 193102. [More] [Online version] [Bibtex] [RIS]
  5. P. Graczyk and M. Krawczyk. "Spin-polarized currents driven by spin-dependent surface screening", Physical Review B, Vol. 100. 2019, pp. 195415. [More] [Online version] [Bibtex] [RIS]
  6. S. Saha et al. "Formation of Néel-type skyrmions in an antidot lattice with perpendicular magnetic anisotropy", Physical Review B, Vol. 100. 2019, pp. 144435. [More] [Online version] [Bibtex] [RIS]
  7. P. Gruszecki, C. Banerjee, M. Mruczkiewicz, O. Hellwig, A. Barman and M. Krawczyk. "The influence of the internal domain wall structure on spin wave band structure in periodic magnetic stripe domain patterns", Solid State Physics, Vol. 70. 2019, pp. 79. [More] [Online version] [Bibtex] [RIS]
  8. J. Grafe et al. "Visualizing nanoscale spin waves using MAXYMUS", Proc. SPIE 11090, Spintronics XII, Vol. XII. 2019, pp. 1109025. [More] [Online version] [Bibtex] [RIS]
  9. V. Vashistha, M. Krawczyk, A. E. Serebryannikov and G. A. Vandenbosch. "Light guiding, bending, and splitting via local modification of interfaces of a photonic waveguide", Optics Letters, Vol. 44. 2019, pp. 4725. [More] [Online version] [Bibtex] [RIS]
  10. P. Graczyk, P. Gruszecki, S. Mamica, J. W. Kłos, M. Krawczyk and G. Gubbiotti. From 2D planar magnonic crystals to 3D magnonic crystals, Chapter 2 in 'Three-Dimensional Magnonics', Jenny Stanford Publishing, 2019. [More] [Online version] [Bibtex] [RIS]
  11. A. E. Serebryannikov, H. Hajian, M. Krawczyk, G. A. Vandenbosch and E. Ozbay. "Embedded arrays of annular apertures with multiband near-zero-index behavior and demultiplexing capability at near-infrared", Optical Materials Express, Vol. 9. 2019, pp. 3169. [More] [Online version] [Bibtex] [RIS]
  12. F. Lisiecki et al. "Magnons in a Quasicrystal: Propagation, Extinction, and Localization of Spin Waves in Fibonacci Structures", Physical Review Applied, Vol. 11. 2019, pp. 054061. [More] [Online version] [Bibtex] [RIS]
  13. H. Hajian, A. Ghobadi, A. E. Serebryannikov, B. Butun, G. A. Vandenbosch and E. Ozbay. "VO2-hBN-graphene-based bi-functional metamaterial for mid-infrared bi-tunable asymmetric transmission and nearly perfect resonant absorption", Journal of the Optical Society of America B, Vol. 36. 2019, pp. 1607. [More] [Online version] [Bibtex] [RIS]
  14. O. Dobrovolskiy et al. "Spin-Wave Phase Inverter upon a Single Nanodefect", ACS Appl. Mater. Interfaces, Vol. 11. 2019, pp. 17654. [More] [Online version] [Bibtex] [RIS]
  15. M. Zelent et al. "Spin wave collimation using a flat metasurface", Nanoscale, Vol. 11. 2019, pp. 9743. [More] [Online version] [Bibtex] [RIS]
  16. S. Mamica, M. Krawczyk and D. Grundler. "Non-uniform spin wave softening in 2D magnonic crystals as a tool for opening omnidirectional magnonic band gaps", Phys. Rev. Applied, Vol. 11. 2019, pp. 054011. [More] [Online version] [Bibtex] [RIS]
  17. M. Mailian, O. Y. Gorobets, Y. I. Gorobets, M. Zelent and M. Krawczyk. "Exchange spin waves transmission through the interface between two antiferromagnetically coupled ferromagnetic media", Journal of Magnetism and Magnetic Materials, Vol. 484. 2019, pp. 484. [More] [Online version] [Bibtex] [RIS]
  18. F. Lisiecki et al. "Reprogrammability and scalability of magnonic fibonacci quasicrystals", Physical Review Applied, Vol. 11. 2019, pp. 054003. [More] [Online version] [Bibtex] [RIS]
  19. K. Szulc et al. "Remagnetization in arrays of ferromagnetic nanostripes with periodic and quasiperiodic order", Phys. Rev. B, Vol. 99. 2019, pp. 064412. [More] [Online version] [Bibtex] [RIS]
  20. M. Aalizadeh, A. Khavasi, A. E. Serebryannikov, G. A. Vandenbosch and E. Ozbay. "A route to unusually broadband plasmonic absorption spanning from visible to mid-infrared", Plasmonics. 2019. [More] [Online version] [Bibtex] [RIS]
  21. N. N. Dadoyenkova, Y. S. Dadoyenkova, I. L. Lyubchanskii, M. Krawczyk and K. Y. Guslienko. "Inelastic spin-wave scattering by bloch domain wall flexure oscillations", Physica Status Solidi - RRL, Vol. 2019. 2019, pp. 1800589. [More] [Online version] [Bibtex] [RIS]
  22. J. W. Kłos, K. Badnarek, L. Kasprzyk and S. Mieszczak. "Rozwiązania techniczne i zasady funkcjonowania memrystorów", Przegląd Elektrotechniczny, Vol. 95. 2019, pp. 57. [More] [Online version] [Bibtex] [RIS]
  23. J. Rychły, V. S. Tkachenko, J. W. Kłos, A. Kuchko and M. Krawczyk. "Spin wave modes in a cylindrical nanowire in crossover dipolarexchange regime", J. Phys. D: Appl. Phys., Vol. 52. 2019, pp. 075003. [More] [Online version] [Bibtex] [RIS]

Year: 2018

  1. C. L. Chang et al. "Driving Magnetization Dynamics in an On-Demand Magnonic Crystal via the Magnetoelastic Interactions", Phys. Rev. Applied, Vol. 10. 2018, pp. 064051. [More] [Online version] [Bibtex] [RIS]
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