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Volume 10, Issue 1


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T R O T T ' S C O R N E R
Michael Trott


[1] K.-F. Berggren, K. N. Pichugin, A. F. Sadreev, and A. A. Starikov, "Signatures of Quantum Chaos in the Nodal Points and Streamlines in Electron Transport through Billiards," Journal of Experimental and Theoretical Physics Letters, 70(6), 1999 pp. 403-409. DOI-Link:

[2] K.-F. Berggren, A. F. Sadreev, and A. A. Starikov, "Quantum Chaos among Nodal Points and Streamlines at Ballistic Electron Transport through Open Quantum Dots," Nanotechnology, 12(4), 2001 pp. 562-565. DOI-Link:

[3] K.-F. Berggren, A. F. Sadreev, and A. A. Starikov, "Crossover from Regular to Irregular Behavior in Current Flow through Open Billiards," Physical Review E, 66(1), 2002 pp. 016218-1-016218-10. DOI-Link:

[4] T. Blomquist, H. Schanze, I. V. Zozoulenko, and H.-J. Stöckmann, "Geometry-Dependent Scattering through Quantum Billiards: Experiment and Theory," Physical Review E, 66(2), 2002 pp. 026217-1-026217-4. DOI-Link:

[5] H. Ishio, A. I. Saichev, A. F. Sadreev, and K.-F. Berggren, "Wave Function Statistics for Ballistic Quantum Transport through Chaotic Open Billiards: Statistical Crossover and Coexistence of Regular and Chaotic Waves," Physical Review E, 64(5), 2001 pp. 056208-1-056208-12. DOI-Link:

[6] K. N. Pichugin and A. F. Sadreev, "Aharanov-Bohm Oscillations of Conductance in Two-dimensional Rings," Physical Review B, 56(15), 1997 pp. 9662-9673. DOI-Link:

[7] A. F. Sadreev, "Current Statistics for Transport through Rectangular and Circular Billiards," Physical Review E, 70(1), 2004 pp. 016208-1-016208-7. DOI-Link:

[8] L. Wirtz, C. Stampfer, S. Rotter, and J. Burgdörfer, "Semiclassical Theory for Transmission through Open Billiards: Convergence towards Quantum Transport," Physical Review E, 67(1), 2003 pp. 016206-1-016206-13. DOI-Link:

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