Re: to compute k_x-k_y band structure of a crystal for a given frequency with MPB
Yogesh <[email protected]> Tue, 12 Jun 2018 22:37:12 +0530
| Newsgroups | gmane.comp.science.photonic-bands |
|---|---|
| Message-ID | <CAA8FNm5jqZC9oQ8XS8VQDinrqvCRJrc6jkA3ukrP-d-QgU1n=w@mail.gmail.com> |
--===============4080913313089024429== Content-Type: multipart/alternative; boundary="000000000000c1bf0a056e74e5e4" --000000000000c1bf0a056e74e5e4 Content-Type: text/plain; charset="UTF-8" Hi Ehsan, Kx-Ky band structure for given frequency is known as wavevector diagram (Eigenfrequency contours). Yes MPB is powerful in calculating eigenfrequency contours. For practice, one can refer photonic crystal molding the flow of light book (E-copy is available); chapter-10, page no-225. The control scheme (ctl file) to compute eigenfrequency contours for 2-D square lattice photonic crystal is available in older threads. The control scheme for triangular lattice photonic crystal is done through solving inverse problem using k-search function. This code also available in older threads. So basically kx-ky band structure can be done using MPB. Regards Yogesh. On Tue, Jun 12, 2018 at 9:30 PM, <[email protected]> wrote: > Send mpb-discuss mailing list submissions to > [email protected] > > To subscribe or unsubscribe via the World Wide Web, visit > http://ab-initio.mit.edu/cgi-bin/mailman/listinfo/mpb-discuss > or, via email, send a message with subject or body 'help' to > [email protected] > > You can reach the person managing the list at > [email protected] > > When replying, please edit your Subject line so it is more specific > than "Re: Contents of mpb-discuss digest..." > > > Today's Topics: > > 1. k_x-k_y band structure (Ehsan Saei) > > > ---------------------------------------------------------------------- > > Message: 1 > Date: Tue, 12 Jun 2018 11:34:38 +0000 > From: Ehsan Saei <[email protected]> > To: "[email protected]" <[email protected]> > Subject: [MPB-discuss] k_x-k_y band structure > Message-ID: > <AM5PR0801MB1348D2D75FDE8823FCAC99BE9A7F0@AM5PR0801MB1348. > eurprd08.prod.outlook.com> > > Content-Type: text/plain; charset="iso-8859-1" > > Dear all, > > Is it possible to compute k_x-k_y band structure of a crystal for a given > frequency with MPB? > > Thanks in advance, > Ehsan > > -------------- next part -------------- > An HTML attachment was scrubbed... > URL: <http://ab-initio.mit.edu/pipermail/mpb-discuss/ > attachments/20180612/979eb943/attachment-0001.html> > > ------------------------------ > > Subject: Digest Footer > > _______________________________________________ > mpb-discuss mailing list > [email protected] > http://ab-initio.mit.edu/cgi-bin/mailman/listinfo/mpb-discuss > > ------------------------------ > > End of mpb-discuss Digest, Vol 128, Issue 2 > ******************************************* > -- N. Yogesh. --000000000000c1bf0a056e74e5e4 Content-Type: text/html; charset="UTF-8" Content-Transfer-Encoding: quoted-printable <div dir=3D"ltr"><div class=3D"gmail_default" style=3D"font-family:tahoma,s= ans-serif"><font size=3D"2">Hi Ehsan,</font></div><div class=3D"gmail_defau= lt" style=3D"font-family:tahoma,sans-serif"><font size=3D"2"><br></font></d= iv><div class=3D"gmail_default" style=3D"font-family:tahoma,sans-serif"><fo= nt size=3D"2">Kx-Ky band structure for given frequency is known as wavevect= or diagram (Eigenfrequency contours). Yes MPB is powerful in calculating ei= genfrequency contours. For practice, one can refer photonic crystal molding= the flow of light book (E-copy is available); chapter-10, page no-225.</fo= nt></div><div class=3D"gmail_default" style=3D"font-family:tahoma,sans-seri= f"><font size=3D"2"><br></font></div><div class=3D"gmail_default" style=3D"= font-family:tahoma,sans-serif"><font size=3D"2">The control scheme (ctl fil= e) to compute eigenfrequency contours for 2-D square lattice photonic cryst= al is available in older threads. The control scheme for triangular lattice= photonic crystal is done through solving inverse problem using k-search fu= nction. This code also available in older threads. So basically kx-ky band = structure can be done using MPB.</font></div><div class=3D"gmail_default" s= tyle=3D"font-family:tahoma,sans-serif"><font size=3D"2"><br></font></div><d= iv class=3D"gmail_default" style=3D"font-family:tahoma,sans-serif"><font si= ze=3D"2">Regards</font></div><div class=3D"gmail_default" style=3D"font-fam= ily:tahoma,sans-serif;font-size:large"><font size=3D"2">Yogesh.</font><br><= /div><div class=3D"gmail_extra"><br><div class=3D"gmail_quote">On Tue, Jun = 12, 2018 at 9:30 PM, <span dir=3D"ltr"><<a href=3D"mailto:mpb-discuss-r= [email protected]" target=3D"_blank">[email protected]= it.edu</a>></span> wrote:<br><blockquote class=3D"gmail_quote" style=3D"= margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex">Send mpb-dis= cuss mailing list submissions to<br> =C2=A0 =C2=A0 =C2=A0 =C2=A0 <a href=3D"mailto:[email protected]= ">[email protected]</a><br> <br> To subscribe or unsubscribe via the World Wide Web, visit<br> =C2=A0 =C2=A0 =C2=A0 =C2=A0 <a href=3D"http://ab-initio.mit.edu/cgi-bin/mai= lman/listinfo/mpb-discuss" rel=3D"noreferrer" target=3D"_blank">http://ab-i= nitio.mit.edu/cgi-<wbr>bin/mailman/listinfo/mpb-<wbr>discuss</a><br> or, via email, send a message with subject or body 'help' to<br> =C2=A0 =C2=A0 =C2=A0 =C2=A0 <a href=3D"mailto:mpb-discuss-request@ab-initio= .mit.edu">mpb-discuss-request@ab-initio.<wbr>mit.edu</a><br> <br> You can reach the person managing the list at<br> =C2=A0 =C2=A0 =C2=A0 =C2=A0 <a href=3D"mailto:[email protected]= it.edu">mpb-discuss-owner@ab-initio.<wbr>mit.edu</a><br> <br> When replying, please edit your Subject line so it is more specific<br> than "Re: Contents of mpb-discuss digest..."<br> <br> <br> Today's Topics:<br> <br> =C2=A0 =C2=A01. k_x-k_y band structure (Ehsan Saei)<br> <br> <br> ------------------------------<wbr>------------------------------<wbr>-----= -----<br> <br> Message: 1<br> Date: Tue, 12 Jun 2018 11:34:38 +0000<br> From: Ehsan Saei <<a href=3D"mailto:[email protected]">[email protected]= om</a>><br> To: "<a href=3D"mailto:[email protected]">mpb-discuss@ab-i= nitio.mit.edu</a><wbr>" <<a href=3D"mailto:[email protected]= t.edu">[email protected]</a><wbr>><br> Subject: [MPB-discuss] k_x-k_y band structure<br> Message-ID:<br> =C2=A0 =C2=A0 =C2=A0 =C2=A0 <<a href=3D"mailto:AM5PR0801MB1348D2D75FDE88= [email protected]">AM5PR0801MB1348D= 2D75FDE8823FC<wbr>AC99BE9A7F0@AM5PR0801MB1348.<wbr>eurprd08.prod.outlook.co= m</a>><br> <br> Content-Type: text/plain; charset=3D"iso-8859-1"<br> <br> Dear all,<br> <br> Is it possible to compute k_x-k_y band structure of a crystal for a given f= requency with MPB?<br> <br> Thanks in advance,<br> Ehsan<br> <br> -------------- next part --------------<br> An HTML attachment was scrubbed...<br> URL: <<a href=3D"http://ab-initio.mit.edu/pipermail/mpb-discuss/attachme= nts/20180612/979eb943/attachment-0001.html" rel=3D"noreferrer" target=3D"_b= lank">http://ab-initio.mit.edu/<wbr>pipermail/mpb-discuss/<wbr>attachments/= 20180612/979eb943/<wbr>attachment-0001.html</a>><br> <br> ------------------------------<br> <br> Subject: Digest Footer<br> <br> ______________________________<wbr>_________________<br> mpb-discuss mailing list<br> <a href=3D"mailto:[email protected]">[email protected].= edu</a><br> <a href=3D"http://ab-initio.mit.edu/cgi-bin/mailman/listinfo/mpb-discuss" r= el=3D"noreferrer" target=3D"_blank">http://ab-initio.mit.edu/cgi-<wbr>bin/m= ailman/listinfo/mpb-<wbr>discuss</a><br> <br> ------------------------------<br> <br> End of mpb-discuss Digest, Vol 128, Issue 2<br> ******************************<wbr>*************<br> </blockquote></div><br><br clear=3D"all"><br>-- <br><div class=3D"gmail_sig= nature" data-smartmail=3D"gmail_signature">N. Yogesh.<br></div> </div></div> --000000000000c1bf0a056e74e5e4-- --===============4080913313089024429== Content-Type: text/plain; charset="utf-8" MIME-Version: 1.0 Content-Transfer-Encoding: base64 Content-Disposition: inline X19fX19fX19fX19fX19fX19fX19fX19fX19fX19fX19fX19fX19fX19fX19fX18KbXBiLWRpc2N1 c3MgbWFpbGluZyBsaXN0Cm1wYi1kaXNjdXNzQGFiLWluaXRpby5taXQuZWR1Cmh0dHA6Ly9hYi1p bml0aW8ubWl0LmVkdS9jZ2ktYmluL21haWxtYW4vbGlzdGluZm8vbXBiLWRpc2N1c3M= --===============4080913313089024429==--