Provide the student with the theoretical and methodological bases of fundamental spectroscopies for the characterization of the physical properties of matter in the various aggregation phases
teacher profile teaching materials
Electron-atom collision.
Scattering from surfaces.
Energy loss spectroscopy. Dielectric theory.
Resonant Channels, Fano profiles.
Photoemission and photoabsorption spectroscopies.
Phenomenology of photoemission and photoabsorption experiments.
The Koopmans theorem, satellite peaks, Chemical shift.
Photemission from solids, the three step model.
Angle resolved photoemission, photoelectron diffraction.
Exafs and Nexafs.
(Fa) C. Fadley in Electron spectroscopy vol. 2, edited C.R. Brundle and A.D. Baker, Academic Press, London 1978
(Lu) H. Luth, “Surface and interface of solid materials”, Springer-Verlag Berlin, 2010
(Hu) S. Hufner, “Photoelectron spectroscopy”, Solid State Sciences Vol. 82, Springer, 1995
(SM) S. Mobilio, Interaction between radiation and matter: an introduction, in: “Synchrotron radiation: fundamentals, methodologies and applications”, S. Mobilio and G. Vlaic Eds.. SIF, Bologna (2003)
(ST) J. Stohr, Nexafs Spectroscopy, Springer (Berlin, 1996)
(IL) H. Ibach, H. Luth, Solid-State Physics, Springer, Berlin 2009
(Ma) S.A. Maier, Plasmonics: fundamentals and applications, Springer, Berlin 2007
Fruizione: 20430046 SPETTROSCOPIA in Fisica LM-17 R RUOCCO ALESSANDRO
Programme
Basic concepts and potential scattering in atomic collision.Electron-atom collision.
Scattering from surfaces.
Energy loss spectroscopy. Dielectric theory.
Resonant Channels, Fano profiles.
Photoemission and photoabsorption spectroscopies.
Phenomenology of photoemission and photoabsorption experiments.
The Koopmans theorem, satellite peaks, Chemical shift.
Photemission from solids, the three step model.
Angle resolved photoemission, photoelectron diffraction.
Exafs and Nexafs.
Core Documentation
(BJ) B.H. Bransden, C.J. Joachain “Physics of Atoms and Molecules”, Longman Scientific and Technical, John Whiley and sons(Fa) C. Fadley in Electron spectroscopy vol. 2, edited C.R. Brundle and A.D. Baker, Academic Press, London 1978
(Lu) H. Luth, “Surface and interface of solid materials”, Springer-Verlag Berlin, 2010
(Hu) S. Hufner, “Photoelectron spectroscopy”, Solid State Sciences Vol. 82, Springer, 1995
(SM) S. Mobilio, Interaction between radiation and matter: an introduction, in: “Synchrotron radiation: fundamentals, methodologies and applications”, S. Mobilio and G. Vlaic Eds.. SIF, Bologna (2003)
(ST) J. Stohr, Nexafs Spectroscopy, Springer (Berlin, 1996)
(IL) H. Ibach, H. Luth, Solid-State Physics, Springer, Berlin 2009
(Ma) S.A. Maier, Plasmonics: fundamentals and applications, Springer, Berlin 2007
Type of delivery of the course
Lecturing in the classroom with video-aided projection of slides and laboratory practical classes. The lab classes comprise "hands on " sessions on dedicated microscopesAttendance
Attendance at theory lessons is strongly recommended.Type of evaluation
final oral examination