<div dir="ltr"><div>Dear Prof. F. Tran</div>Thank you very much for your reply</div><br><div class="gmail_quote"><div dir="ltr" class="gmail_attr">Le mar. 14 juil. 2020 à 07:58, Tran, Fabien <<a href="mailto:fabien.tran@tuwien.ac.at">fabien.tran@tuwien.ac.at</a>> a écrit :<br></div><blockquote class="gmail_quote" style="margin:0px 0px 0px 0.8ex;border-left:1px solid rgb(204,204,204);padding-left:1ex">
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<p>Hi,</p>
<p>If the system spontaneously became ferrimagnetic, then most likely it means that it is more stable (i.e., a more negative total energy) than ferromagnetism. There is no reason to redo the ferrimagnetic calculation, since you have it already.<br>
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<div id="gmail-m_-6074259720031289587divRplyFwdMsg" dir="ltr"><font style="font-size:11pt" face="Calibri, sans-serif" color="#000000"><b>From:</b> Wien <<a href="mailto:wien-bounces@zeus.theochem.tuwien.ac.at" target="_blank">wien-bounces@zeus.theochem.tuwien.ac.at</a>> on behalf of Wien2k User <<a href="mailto:wien2k.user@gmail.com" target="_blank">wien2k.user@gmail.com</a>><br>
<b>Sent:</b> Tuesday, July 14, 2020 1:25 AM<br>
<b>To:</b> A Mailing list for WIEN2k users<br>
<b>Subject:</b> [Wien] Ferrimagnetic/Ferrimognetic</font>
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<div dir="ltr">Dear Wien2k users;
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<div>we have done an SCF calculation for a compound that contains two different magnetic atoms, we oriented the spins of the two atoms in the same direction along z (ferromagnetic case) but at the end of the calculation, we found that they are moving antiparallelally
(ferrimagntism)<br>
in this case, can we judge that the ground state of this material is ferrimagnetic .? or else we have to redo the calculation with two different directions (antiparallelally) to confirm?<br>
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