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eeqt,量子跃迁和量子分形

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Abstract Event Enhanced Quantum (EEQT) allows for simulation of an individual quantum system on which a simultaneous measurement of several noncommuting observables is being performed. Such a coupling of a quantum system to the measuring devices causes chaotic quantum jumps and fractal-like pattern generation (via nonlinear IFS) on the manifold of quantum states (usually complex projective plane). The simplest example is a 2-dimensional comlex Hilbert space, which leads to fractals on the two-sphere. A short introduction into the subject will be given. It will be then shown that EEQT algorithm works also with indefinite metric, and that here are no negative probabilities. Symmetric configurations of detectors will be shown to generate quantum fractals on the Poincare disk. The Algorithm In applications the vectors n[i

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