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<!-- * Set USERSTYLEURL = %PUBURLPATH%/%WEB%/DokumentFormat/fonts.css --> ---+!! Course %FORMFIELD{"Bezeichnung"}% %TOC{depth="3"}% %STARTSECTION{"no_toc"}% --- *Responsible:* Prof. Dr. Stefan Altmeyer ---++ Course ---+++ Meets requirements of following modules(MID) * in active programs * [[BaET2012_ABT]] * [[BaET2010_ABT]] ---+++ Course Organization <sticky> <table border="0"> <tr valign="top"> <td> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Version</th> <tr> <td>created</td> <td>2011-11-30</td> </tr> <tr> <td>VID</td> <td>1</td> </tr> <tr> <td>valid from</td> <td>WS 2012/13</td> </tr> <tr> <td>valid to</td> <td/> </tr> </table> </td> <td> </td> <td> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Course identifiers</th> <tr> <td>Long name</td> <td>%FORMFIELD{"Bezeichnung"}%</td> </tr> <tr> <td>CID</td> <td>F07_ABT</td> </tr> <tr> <td>CEID (exam identifier)</td> <td/> </tr> </table> </td> </tr> </table> </sticky><sticky> <table border="0"> <tr valign="top"> <td> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Contact hours per week (SWS)</th> <tr> <td>Lecture</td> <td>%FORMFIELD{"VorlesungSWS"}%</td> </tr> <tr> <td>Exercise (unsplit)</td> <td>%FORMFIELD{"UebungGanzSWS"}%</td> </tr> <tr> <td>Exercise (split)</td> <td>%FORMFIELD{"UebungHalbSWS"}%</td> </tr> <tr> <td>Lab</td> <td>%FORMFIELD{"PraktikumSWS"}%</td> </tr> <tr> <td>Project</td> <td>%FORMFIELD{"ProjektSWS"}%</td> </tr> <tr> <td>Seminar</td> <td>%FORMFIELD{"SeminarSWS"}%</td> </tr> <tr> <td>Tutorial(voluntary)</td> <td>%FORMFIELD{"TutoriumSWS"}%</td> </tr> </table> </td> <td> </td> <td> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Total contact hours</th> <tr> <td>Lecture</td> <td>%FORMFIELD{"VorlesungPZ"}%</td> </tr> <tr> <td>Exercise (unsplit)</td> <td>%FORMFIELD{"UebungGanzPZ"}%</td> </tr> <tr> <td>Exercise (split)</td> <td>%FORMFIELD{"UebungHalbPZ"}%</td> </tr> <tr> <td>Lab</td> <td>%FORMFIELD{"PraktikumPZ"}%</td> </tr> <tr> <td>Project</td> <td>%FORMFIELD{"ProjektPZ"}%</td> </tr> <tr> <td>Seminar</td> <td>%FORMFIELD{"SeminarPZ"}%</td> </tr> <tr> <td>Tutorial (voluntary)</td> <td>%FORMFIELD{"TutoriumPZ"}%</td> </tr> </table> </td> <td> </td> <td> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Max. capacity</th> <tr> <td>Exercise (unsplit)</td> <td>%FORMFIELD{"UebungGanzTeilnehmer"}%</td> </tr> <tr> <td>Exercise (split)</td> <td>%FORMFIELD{"UebungHalbTeilnehmer"}%</td> </tr> <tr> <td>Lab</td> <td>%FORMFIELD{"PraktikumTeilnehmer"}%</td> </tr> <tr> <td>Project</td> <td>%FORMFIELD{"ProjektTeilnehmer"}%</td> </tr> <tr> <td>Seminar</td> <td>%FORMFIELD{"SeminarTeilnehmer"}%</td> </tr> </table> </td> </tr> </table> </sticky> *Total effort (hours):* %FORMFIELD{"Gesamtaufwand"}% ---++++ Instruction language * Deutsch ---++++ Study Level * %FORMFIELD{"Niveau"}% ---++++ Prerequisites * series expansion * differential calculus * integral calculus * Fourier transfom * geometrical optics * wave optics ---++++ Textbooks, Recommended Reading * Pedrotti, Pedrotti, Bausch, Schmidt: Optik für Ingenieure. Grundlagen (Springer) * Hecht: Optik (Oldenbourg) * Perez: Optik (Spektrum Akademischer Verlag) * Goodman: Introduction to Fourier Optics (Roberts and Co. Publishers) * Kurz, Lauterborn: Coherent Optics (Springer) ---++++ Instructors * Prof. Dr. Stefan Altmeyer ---++++ Supporting Scientific Staff * none ---++++ Transcipt Entry Theory of Imaging ---+++ Assessment <sticky> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Type</th> <tr> <td>oE</td> <td>normal case (except on large numbers on assessments: wE)</td> </tr> </table> </sticky> <sticky> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Total effort [hours]</th> <tr> <td>oE</td> <td>15</td> </tr> </table> </sticky> *Frequency:* 2-3/year ----- ---++ Course components %STARTSECTION{"Vorlesung"}% ---+++ <u>Lecture</u> ---++++ Objectives ---+++++ Lerninhalte (Kenntnisse) * mathematics * 2D Fourier transform * linearity theorem * similarity theorem * shift theorem * convolution theorem * autocorrelation theorem * Fourier transforms of special functions * Hilbert space * sckalar product * norm * basis vector representations * completeness * delta functionals * definition in higher dimesnions, shifted * sifting properties * mathematically equivalent representations * coherence * representation as correlation function * temporal coherence and Wiener-Chintschin theorem * spatial coherence and Van-Cittert-Zernike theorem * Theory of 2 dimensional linear systemsapplied to optical systems * point spread function in amplitude and intensity * optical transfer function in amplitude and intensity * modulation transfer function * phase transfer function * relation to point spread function * relation to pupil function * relation to wavefront aberration function * mathematical relation of coherent and incoherent optical transfer function * coherent and incoherent frequency cutoff * aberrations * Seidel aberration * point spread functions * phase representation in the exit pupil plane * reason for the different aberrations * strategies for aberration minimaziation * Zernike polynomials * measuring phases * Shack-Hartmann sensor * Shearing plate ---+++++ Acquired Skills * assured calculation of Fourier transforms with use of the Foutrier theorems * analysis of optical systems * identification of coherent and incoherent optical systens * assured application of coherent and incoherent linear system theory * identification and naming of aberrations * design of optical setups for the measurement of phase and aberrations ---++++ Additional Component Assessment * none %ENDSECTION{"Vorlesung"}% %STARTSECTION{"Praktikum"}% ---+++ <u>Lab</u> ---++++ Objectives ---+++++ Acquired Skills * adjustment of optical setups * using commerical software packages * exploitation of aquired data * graphical preparation of data ---+++++ Operational Competences * self-reliant planning and realization of optical setups * measurement of point spread functions and optical transfer functions * calculation of the point spread function from a given transfer function * calculation of the transfer function from a given point spread function * realization of a light source with adjustable degree of coherence * measurement and interpretation of the transfer function of an objective in depedence on varying coherence * measurement and interpretation of the modulation transfer funtion of an objective in dependence on a varying aperture stop * writing of a scientific report * precise description of the task * representation of the approach * description of the setup * explanation of data expoitation * presentation if the result and critical discussion ---++++ Additional Component Assessment <sticky> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Type</th> <tr> <td>fIN</td> <td>interview on specific topics</td> </tr> <tr> <td>fTP</td> <td>supervised team project, groups as small as possible</td> </tr> <tr> <td>fLP</td> <td>written presentation of outcomes</td> </tr> </table> </sticky> <sticky> <table border="1" cellpadding="2" cellspacing="0"> <th colspan="2">Contribution to course grade</th> </table> </sticky> *Frequency:* 1/year %ENDSECTION{"Praktikum"}% %ENDSECTION{"no_toc"}%
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Topic-Revision: r1 - 11 Jan 2016,
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