<div dir="ltr"><div>Dear Marcelo,<br></div><div>Thank you for the answer.</div><div><br></div><div>My calculations include SOC, they are not spin-polarized. </div><div>I managed to extract information about spin by using the option ( <b>lsigma(i)</b> ) in bands.x input file. <br></div><div><br></div><div>Best regards,</div><div>Fabio<br></div><div><br></div><div><br></div></div><br><div class="gmail_quote"><div dir="ltr" class="gmail_attr">Marcelo Albuquerque <<a href="mailto:marcelofilho@id.uff.br">marcelofilho@id.uff.br</a>> escreveu no dia quarta, 20/01/2021 à(s) 12:53:<br></div><blockquote class="gmail_quote" style="margin:0px 0px 0px 0.8ex;border-left:1px solid rgb(204,204,204);padding-left:1ex"><div dir="ltr"><div dir="ltr">Dear Fábio,</div><div dir="ltr"><br></div><div>There are a few examples in QE that shows us how to perform spin-polarized calculations to extract the spin-polarized band structures of a system.</div><div><br></div><div>Here are some of the directories where you can find them:</div><div>1) .../QE/PP/examples/example06</div><div>2) .../QE/PW/examples/example06</div><div>3) .../QE/PW/examples/example11</div><div><br></div><div>Here PP stands for Post-Processing. I put it at first because there you're going to find how to plot the bands.</div><div><br></div><div>Hope it can help.</div><div><br></div><div>Cheers,</div><div><i style="color:rgb(0,0,0);font-family:monospace"><font size="1"> Marcelo Albuquerque</font></i><br></div><div dir="ltr"><div><div dir="ltr"><div dir="ltr"><blockquote style="margin:0px 0px 0px 40px;border:medium none;padding:0px"></blockquote><i style="text-align:center;color:rgb(0,0,0);font-family:monospace"><div style="text-align:left"><i><font size="1"> Ph.D. Candidate</font></i></div></i><blockquote style="margin:0px 0px 0px 40px;border:medium none;padding:0px"></blockquote><i style="text-align:center;color:rgb(0,0,0);font-family:monospace"><div style="text-align:left"><i><font size="1"> Physics Institute</font></i></div></i><blockquote style="margin:0px 0px 0px 40px;border:medium none;padding:0px"></blockquote><i style="color:rgb(0,0,0);font-family:monospace;font-size:x-small;text-align:center"><div style="text-align:left"><i>Universidade Federal Fluminense (UFF)</i></div></i><div><div><div style="text-align:left"><font size="1" face="monospace" color="#000000"><i style="background-color:rgb(255,255,255)"> Niterói/RJ - Brazil</i></font></div></div></div><div><div dir="ltr"><blockquote style="margin:0px 0px 0px 40px;border:medium none;padding:0px"></blockquote><blockquote style="margin:0px 0px 0px 40px;border:medium none;padding:0px"></blockquote><blockquote style="margin:0px 0px 0px 40px;border:medium none;padding:0px"></blockquote></div></div></div></div></div><br></div><br><div class="gmail_quote"><div dir="ltr" class="gmail_attr">On Wed, Jan 20, 2021 at 8:01 AM Fábio Ferreira wrote:<br></div><blockquote class="gmail_quote" style="margin:0px 0px 0px 0.8ex;border-left:1px solid rgb(204,204,204);padding-left:1ex"><br>
Dear all,<br>
<br>
I have carried out calculations for transition metal dichalcogenides like<br>
MoS2 including spin-orbit-coupling.<br>
In this paper (<a href="https://doi.org/10.1039/C9RA10199C" rel="noreferrer" target="_blank">https://doi.org/10.1039/C9RA10199C</a>) they extract the value<br>
of spin component Sz as you can be seen in Figs. 1 and 3.<br>
I would like to know if it is possible to extract information about spin<br>
polarization in each band at a certain K-point.<br>
<br>
Best regards,<br>
Fabio<br>
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