Observation of angle-dependent mode conversion and mode hopping in 2D annular antidot lattice

被引:0
作者
Nikita Porwal
Anulekha De
Sucheta Mondal
Koustuv Dutta
Samiran Choudhury
Jaivardhan Sinha
Anjan Barman
P. K. Datta
机构
[1] Indian Institute of Technology Kharagpur,Department of Physics
[2] S. N. Bose National Centre for Basic Sciences,Department of Condensed Matter Physics and Material Sciences
[3] Block JD,undefined
[4] Sector III,undefined
[5] Salt Lake,undefined
来源
Scientific Reports | / 9卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
We report spin-wave excitations in annular antidot lattice fabricated from 15 nm-thin Ni80Fe20 film. The nanodots of 170 nm diameters are embedded in the 350 nm (diameter) antidot lattice to form the annular antidot lattice, which is arranged in a square lattice with edge-to-edge separation of 120 nm. A strong anisotropy in the spin-wave modes are observed with the change in orientation angle (ϕ) of the in-plane bias magnetic field by using Time-resolved Magneto-optic Kerr microscope. A flattened four-fold rotational symmetry, mode hopping and mode conversion leading to mode quenching for three prominent spin-wave modes are observed in this lattice with the variation of the bias field orientation. Micromagnetic simulations enable us to successfully reproduce the measured evolution of frequencies with the orientation of bias magnetic field, as well as to identify the spatial profiles of the modes. The magnetostatic field analysis, suggest the existence of magnetostatic coupling between the dot and antidot in annular antidot sample. Further local excitations of some selective spin-wave modes using numerical simulations showed the anisotropic spin-wave propagation through the lattice.
引用
收藏
相关论文
共 64 条
  • [1] Hellwig O(2007)Separating dipolar broadening from the intrinsic switching field distribution in perpendicular patterned media Appl. Phys. Lett. 90 162516-5827
  • [2] Tehrani S(1999)Highdensity submicron magnetoresistive random access memory (invited) J. Appl. Phys. 85 5822-3403
  • [3] Kostylev MP(2005)Spin-wave logical gates Appl. Phys. Lett. 87 153501-648
  • [4] Kumar D(2014)Magnetostatic interaction in arrays of nanometric permalloy wires: A magneto-optic Kerr effect and a Brillouin light scattering study Sci. Rep. 4 224413-9986
  • [5] Barman S(2005)Brillouin light scattering investigation of dynamic spin modes confined in cylindrical permalloy dots Phys. Rev. B 72 184409-119
  • [6] Barman A(2003)Precessional dynamics in microarrays of nanomagnets Phys. Rev. B 68 10A706-undefined
  • [7] Gubbiotti G(2005)Collective spin-wave excitations in a two-dimensional array of coupled magnetic nanodots J. Appl. Phys. 97 014427-undefined
  • [8] Gubbiotti G(2012)Metamaterial Properties of One-Dimensional and Two-Dimensional Magnonic Crystals Phys. Rev. B 85 151-undefined
  • [9] Kruglyak VV(2012)Imaging Collective Magnonic Modes in 2D Arrays of Magnetic Nanoelements Solid State Phys. 63 027201-undefined
  • [10] Verba R(2010)Optically induced tunable magnetization dynamics in nanoscale Co antidot lattices Phys. Rev. Lett. 104 3397-undefined