4.6 Article

Atomistic spin dynamics of the Cu-Mn spin-glass alloy

期刊

PHYSICAL REVIEW B
卷 79, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.79.024411

关键词

copper alloys; damping; density functional theory; Heisenberg model; manganese alloys; spin dynamics; spin glasses

资金

  1. Swedish Foundation for Strategic Research (SSF)
  2. Swedish Research Council (VR)
  3. Royal Swedish Academy of Sciences (KVA)
  4. Liljewalchs Resestipendium
  5. Wallenbergstiftelsen

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We demonstrate the use of Langevin spin dynamics for studying dynamical properties of an archetypical spin-glass system. Simulations are performed on CuMn (20% Mn) where we study the relaxation that follows a sudden quench of the system to the low-temperature phase. The system is modeled by a Heisenberg Hamiltonian where the Heisenberg interaction parameters are calculated by means of first-principles density-functional theory. Simulations are performed by numerically solving the Langevin equations of motion for the atomic spins. It is shown that dynamics is governed, to a large degree, by the damping parameter in the equations of motion and the system size. For large damping and large system sizes, we observe the typical aging regime.

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