def getvdos(self): return vdos(self.m.timestep)
def sed(self): from aces.runners.vdos import vdos correlation_supercell=self.m.correlation_supercell vdos(self.m.timestep).lifesed(correlation_supercell=correlation_supercell)
def band(self): from aces.runners.vdos import vdos correlation_supercell=self.m.correlation_supercell vdos(self.m.timestep).sed_band(correlation_supercell=correlation_supercell) self.drawband()
def allnma(self): from aces.runners.vdos import vdos vdos(self.m.timestep).allnma()
def allnmaq(self,k=[0,0,0]): from aces.runners.vdos import vdos vdos(self.m.timestep).allnmaq(k=k)
def nmaq(self,k=[0,0,0],test=False): from aces.runners.vdos import vdos correlation_supercell=self.m.correlation_supercell vdos(self.m.timestep).lifenmaq(k=k,correlation_supercell=correlation_supercell,test=test)
def band(self): from aces.runners.vdos import vdos correlation_supercell = self.m.correlation_supercell vdos(self.m.timestep).sed_band( correlation_supercell=correlation_supercell) self.drawband()
def sed(self): from aces.runners.vdos import vdos correlation_supercell = self.m.correlation_supercell vdos(self.m.timestep).lifesed( correlation_supercell=correlation_supercell)
def allnmaq(self, k=[0, 0, 0]): from aces.runners.vdos import vdos vdos(self.m.timestep).allnmaq(k=k)
def nmaq(self, k=[0, 0, 0], test=False): from aces.runners.vdos import vdos correlation_supercell = self.m.correlation_supercell vdos(self.m.timestep).lifenmaq( k=k, correlation_supercell=correlation_supercell, test=test)