Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1594092 | Solid State Communications | 2010 | 4 Pages |
In this work we investigate magnonic band gaps, in the terahertz (THz) frequency range, in periodic and quasiperiodic (Fibonacci sequence) magnonic crystals formed by layers of Cobalt (Co) and Permalloy (Py). Our theoretical model is based on a magnetic Heisenberg Hamiltonian in the exchange regime, together with a transfer-matrix treatment within the random-phase approximation (RPA). For periodic arrangements the bulk band structure is analogous to those found in photonic crystals, while for quasiperiodic multilayers it presents additional pass bands similar to those found in doped electronic materials.
Research highlights► Theoretical model based on a magnetic Heisenberg Hamiltonian. ► Quasiperiodic (Fibonacci sequence) magnonic crystals. ► Partial magnonic band gaps in the terahertz (THz) frequency range.