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- W4281554488 abstract "We studied the spin-wave resonance (SWR) frequency and low-temperature magnetization, internal energy, and specific heat of an antiferromagnetic graphene-like bilayer system with two sublattices by applying the retarded Green's function method and the linear spin-wave approximation. The numerical results show that two SWR frequencies in the system can be adjusted by changing the longitudinal magnetic field, interlayer (intralayer) exchange coupling, and intralayer anisotropy. These parameters greatly influence the magnetization, internal energy, and specific heat at low temperatures. Crossovers between the two sublattice magnetizations were observed for the different intralayer exchange couplings, which are affected by the quantum and thermal fluctuations. • The spin-wave resonance frequencies of the graphene-like system are first studied by use of the retarded Green's function method. • The effects of physical parameters on the spin-wave resonance frequencies, magnetizations, internal energy and specific heat of the antiferromagnetic graphene-like system are studied in detail." @default.
- W4281554488 created "2022-05-27" @default.
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- W4281554488 date "2022-10-01" @default.
- W4281554488 modified "2023-10-01" @default.
- W4281554488 title "Spin-wave resonance frequency and low-temperature properties of an antiferromagnetic graphene-like bilayer system" @default.
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- W4281554488 doi "https://doi.org/10.1016/j.physb.2022.414053" @default.
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