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Atom-Laser-Interaction in Traps, SS10

Penningfalle

 

Content

The chapters of the lecture notes are available online on the eLearning platform Moodle in pdf format:
Moodle course section Physik SS10 external Link
Moodle course Atom-Laser-Interaction in Traps (SS 10) external Link

I      Atom-Light-Interaction
1.  From classical light to light quants
2.  Interaction of atoms with radiation

II     Lasers and ion traps
1.  Laser basics
2.  Laser systems
3.  Ion storage
4.  Ion cooling

III    Hydrogen-like atoms
1.  The search for a relativistic quantum mechanics
2.  Dirac equation for hydrogen-like systems
3.  Schrödinger-like equations
4.  Lamb shift
5.  Hyperfine structure

IV     Precision laser spectroscopy
1.  Spectral linewidth
2.  Laser spectroscopic methods
3.  Nonlinear methods of Doppler-free spectroscopy and 1s-2s laser spectroscopy
4.  The frequency comb
5.  Laser spectroscopy of short-lived exotic nuclides
6.  Isotope shift

V       Fano formalism for resonances in the continuum
1.  Effects of intense electrical fields in H-like ions
2.  Autoionizing resonances in multi-electron atoms
3.  Fano formalism for resonances in the continuum

VI     Magnetic moments and g-factors
1.  The magnetic moment of the free electron
2.  The magnetic moment of the electron
3.  The magnetic moment of the proton and antiproton

VII    Multi-electron systems
1.  Independent Particle Model
2.  Relativistic corrections
3.  Periodic Table of Elements
4.  Multiconfiguration Dirac-Fock method

VIII  Precision mass spectrometry

IX     Laser spectroscopy for multi-electron systems
1.  1s Lamb shift measurements in hydrogen-like ions
2.  Dielectronic recombination experiments
3.  The hyperfine structure of hydrogen-like systems