
Publications of Peter Maunz
All genres
Journal Article (8)
1.
Journal Article
54 (13-15), pp. 1927 - 1937 (2007)
Light force fluctuations in a strongly coupled atom-cavity system. Journal of Modern Optics 2.
Journal Article
74 (10), 043412 (2006)
Momentum diffusion for coupled atom-cavity oscillators. Physical Review A 3.
Journal Article
94 (3), 033002 (2005)
Normal-mode spectroscopy of a single bound atom-cavity system. Physical Review Letters 4.
Journal Article
428 (6978), pp. 50 - 52 (2004)
Cavity cooling of a single atom. Nature 5.
Journal Article
112, pp. 7 - 12 (2004)
Single-Atom Trajectories in Higher-Order Transverse Modes of a High-Finesse Optical Cavity. Physica Scripta T 6.
Journal Article
28 (1), pp. 46 - 48 (2003)
Emission pattern of an atomic dipole in a high-finesse optical cavity. Optics Letters 7.
Journal Article
88 (16), 163002, pp. 163002 (2002)
Feedback on the motion of a single atom in an optical cavity. Physical Review Letters 8.
Journal Article
88 (4), 043601, pp. 043601 (2002)
Optical kaleidoscope using a single atom. Physical Review Letters Book Chapter (1)
9.
Book Chapter
Single atoms and single photons in cavity quantum electrodynamics. In: Coherence and Quantum Optics VIII, pp. 241 - 248 (Eds. Eberly, J. H.; Bigelow, N.; Wolf, E.). Plenum Press, New York (2003)
Conference Paper (2)
10.
Conference Paper
Cooling and Trapping in Cavity Quantum Electrodynamics. In: Laser Spectroscopy: Proceedings of the XVII International Conference, pp. 178 - 188 (Eds. Hinds, E.A.; Ferguson, A.; Riis, E.). Laser Spectroscopy XVII, Aviemore, Scotland UK, June 19, 2005 - June 24, 2005. World Scientific, Singapore (2005)
11.
Conference Paper
Single-Atom Motion in Optical Cavity QED. In: Proceedings of the XV International Conference on Laser Spectroscopy, pp. 176 - 183 (Eds. Chu, S.; Vuletić, V.; Kerman, A. J.; Chin, C.). XV International Conference on Laser Spectroscopy, Snowbird, Utah, June 10, 2001 - June 15, 2001. World Scientific, New Jersey (2002)
Report (1)
12.
Report
Cavity cooling and spectroscopy of a bound atom-cavity system. Max-Planck-Institut für Quantenoptik, Garching (2005), 140 pp.