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def bar():
system = oc.System(name="example-bar")
shape = (100e-9, 30e-9, 30e-9)
d = 10e-9
mesh = oc.Mesh(p1=(0, 0, 0), p2=shape, cell=(d, d, d))
# Permalloy
A = 1e-12
H = (0, 0, 0) # no Zeeman field, but provide interaction as convenience
system.hamiltonian = oc.Exchange(A=A) + oc.Demag() + oc.Zeeman(H=H)
alpha = 0.2
system.dynamics = oc.Precession(gamma=oc.consts.gamma0) + \
oc.Damping(alpha=alpha)
Ms = 8e6 # A/m
system.m = df.Field(mesh, value=(1, 0, 1), norm=Ms)
return system
def macrospin():
"""Return a sytsem that represents a macrospin.
"""
p1 = (0, 0, 0)
p2 = (5e-9, 5e-9, 5e-9)
cell = (5e-9, 5e-9, 5e-9)
mesh = oc.Mesh(p1=p1, p2=p2, cell=cell)
system = oc.System(name='example-macrospin')
system.hamiltonian = oc.Zeeman(H=(0, 0, 5e6))
system.m = df.Field(mesh, value=(0, 0, 1), norm=8e6)
system.dynamics = oc.Precession(gamma=oc.consts.gamma) + \
oc.Damping(alpha=0.05)
return system