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Number of items: 14.

Bittner, S. and Dietz, B. and Harney, H. L. and Miski-Oglu, M. and Richter, A. and Schäfer, F. (2014):
Scattering experiments with microwave billiards at an exceptional point under broken time-reversal invariance.
In: Phys. Rev. E, American Physical Society, pp. 032909, 89, [Online-Edition: http://link.aps.org/doi/10.1103/PhysRevE.89.032909],
[Article]

Bittner, S. and Dietz, B. and Harney, H. L. and Miski-Oglu, M. and Richter, A. and Schäfer, F. (2014):
Scattering experiments with microwave billiards at an exceptional point under broken time-reversal invariance.
In: Phys. Rev. E, American Physical Society, pp. 032909, 89, [Online-Edition: http://link.aps.org/doi/10.1103/PhysRevE.89.032909],
[Article]

Bittner, S. and Dietz, B. and Harney, H. L. and Miski-Oglu, M. and Richter, A. and Schäfer, F. (2014):
Scattering experiments with microwave billiards at an exceptional point under broken time-reversal invariance.
In: Physical Review E, 89, (3), ISSN 1539-3755,
[Online-Edition: http://dx.doi.org/10.1103/PhysRevE.89.032909],
[Article]

Bittner, S. and Dietz, B. and Günther, U. and Harney, H. L. and Miski-Oglu, M. and Richter, A. and Schäfer, F. (2012):
PT Symmetry and Spontaneous Symmetry Breaking in a Microwave Billiard.
In: Physical Review Letters, American Physical Society, pp. 024101, 108, (2), [Online-Edition: http://link.aps.org/doi/10.1103/PhysRevLett.108.024101],
[Article]

Dietz, B. and Harney, H. L. and Richter, A. and Schäfer, F. and Weidenmüller, H. A. (2010):
Cross-section fluctuations in chaotic scattering.
In: Physics Letters B, p. 263, 685, (4-5), ISSN 03702693,
[Online-Edition: http://dx.doi.org/10.1016/j.physletb.2010.01.074],
[Article]

Dietz, B. and Friedrich, T. and Harney, H. L. and Miski-Oglu, M. and Richter, A. and Schäfer, F. and Weidenmüller, H. A. (2010):
Quantum chaotic scattering in microwave resonators.
In: Physical Review E, pp. 036205, 81, (3), ISSN 1539-3755,
[Online-Edition: http://dx.doi.org/10.1103/PhysRevE.81.036205],
[Article]

Dietz, B. and Friedrich, T. and Harney, H. L. and Miski-Oglu, M. and Richter, A. and Schäfer, F. and Weidenmüller, H. A. (2008):
Chaotic Scattering in the Regime of Weakly Overlapping Resonances.
In: Phys. Rev. E, pp. 055204(R), 78, [Online-Edition: http://link.aps.org/abstract/PRE/v78/e055204],
[Article]

Dietz, Barbara and Friedrich, T. and Harney, H. L. and Miski-Oglu, M. and Richter, A. and Schaefer, F. and Weidenmueller, H. A. (2007):
Induced time-reversal symmetry breaking observed in microwave billiards.
In: Physical Review Letters, 98, [Article]

Dietz, B. and Guhr, Thomas and Harney, H. L. and Richter, A. (2006):
Strength distributions and symmetry breaking in coupled microwave billiards.
In: Physical Review Letters, 96, [Article]

Dembowski, C. and Dietz, Barbara and Friedrich, T. and Gräf, H.-D. and Harney, H. L. and Heine, Andreas and Miski-Oglu, M. and Richter, Achim (2005):
Distribution of resonance strengths in microwave billiards of mixed and chaotic dynamics.
Darmstadt, Inst. für Kernphysik, [Report]

Hofferbert, Ralph and Alt, H. and Dembowski, C. and Gräf, H.-D. and Harney, H. L. and Heine, Andreas and Rehfeld, H. and Richter, Achim (2005):
Experimental investigations of chaos-assisted tunneling in a microwave annular billiard.
Darmstadt, Inst. für Kernphysik, [Report]

Dembowski, Christian and Dietz, Barbara and Gräf, Hans-Dieter and Harney, H. L. and Heine, Andreas and Heiss, W. D. and Richter, Achim (2004):
Encircling an exceptional point.
In: Physical review E, pp. 1-7, 69, [Article]

Dembowski, Christian and Dietz, Barbara and Gräf, Hans-Dieter and Harney, H. L. and Heine, Andreas and Heiss, W. D. and Richter, Achim (2003):
Observation of a chiral state in a microwave cavity.
In: Physical Review Letters, pp. 1-4, 90, [Article]

Dembowski, Christian and Graef, H.-D. and Harney, H. L. and Heine, A. and Heiss, W. D. and Rehfeld, H. and Richter, A. (2001):
Experimental observation of the topological structure of exceptional points.
In: Physical review letters, p. 787, 86, [Article]

This list was generated on Tue Jun 18 01:40:30 2019 CEST.