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ANNUAL REPORT - MTA SzFKI

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⎯ Neutron beam methods in materials science, (L, Rosta, BME)<br />

⎯ Neutron scattering in condensed matter (L. Rosta, ME 4 )<br />

⎯ Disorder in condensed phases (L. Pusztai, ELTE)<br />

⎯ From femtosecond lasers to attophysics (P. Dombi, SZTE 5 )<br />

⎯ Physics of amorphous matter I.-II. (M. Koós, SZTE)<br />

⎯ Growth, processing and characterization of nonlinear optical crystals (In: Applied<br />

Lasertechnics, I. Földvári, BME)<br />

⎯ Classic theories of crystal nucleation (L. Malicskó, BME)<br />

⎯ Theories of crystal growth (L. Malicskó, BME)<br />

⎯ Microscopic characterization of crystals (L. Malicskó, BME)<br />

⎯ Microscopy in materials science (L. Malicskó, BME)<br />

⎯ Technical application of crystals (E. Hartmann, BME)<br />

⎯ The characterization of crystals ( E. Hartmann, BME)<br />

⎯ Infrared vibrational spectroscopy, part of the course Experimental methods in materials<br />

science (L. Kovács, BME)<br />

⎯ Thermodynamics (P. Ádám, PTE 6 )<br />

⎯ Quantum mechanics I-II (P. Ádám, PTE)<br />

⎯ Resonant light-matter interaction (P. Ádám, PTE)<br />

⎯ Open Quantum Systems (P. Ádám, PTE)<br />

⎯ Theory of laser cooling and trapping (P. Domokos, ELTE, BME)<br />

⎯ Quantum mechanics (J. Janszky, PTE)<br />

⎯ Quantum information theory (P. Ádám, PTE)<br />

⎯ Applied optics (T. Kiss, ELTE)<br />

⎯ Information theory (M. Koniorczyk, PTE)<br />

⎯ Many-body problem in quantum mechanics (M. Koniorczyk, PTE)<br />

⎯ Introduction to programming (M. Koniorczyk, PTE)<br />

⎯ Operating systems II. (M. Koniorczyk, PTE)<br />

⎯ Introduction to quantum optics (Z. Kis, ELTE)<br />

⎯ Coherent control of quantum systems (Z. Kis, ELTE)<br />

⎯ Many-body problems I. (G. Szirmai, P. Szépfalusy, ELTE)<br />

⎯ Many-body problems II. (P. Szépfalusy, G. Szirmai, ELTE)<br />

4 ME = University of Miskolc<br />

5 SZTE = University of Szeged<br />

6 PTE = University of Pécs<br />

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