Completely mixing quantum open systems and quantum fractals

Blanchard P, Jadczyk A, Olkiewicz R (2001)
PHYSICA D-NONLINEAR PHENOMENA 148(3-4): 227-241.

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Departing from classical concepts of ergodic theory, formulated in terms of probability densities, measures describing the mixing behavior and the loss of information in quantum open systems are proposed. As application we discuss the chaotic outcomes of continuous measurement processes in the EEQT framework. Simultaneous measurement of four noncommuting spin components is shown to lead to a chaotic jumps on the quantum spin sphere and to generate specific fractal images of a nonlinear iterated function system. (C) 2001 Published by Elsevier Science B.V.
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Blanchard P, Jadczyk A, Olkiewicz R. Completely mixing quantum open systems and quantum fractals. PHYSICA D-NONLINEAR PHENOMENA. 2001;148(3-4):227-241.
Blanchard, P., Jadczyk, A., & Olkiewicz, R. (2001). Completely mixing quantum open systems and quantum fractals. PHYSICA D-NONLINEAR PHENOMENA, 148(3-4), 227-241.
Blanchard, P., Jadczyk, A., and Olkiewicz, R. (2001). Completely mixing quantum open systems and quantum fractals. PHYSICA D-NONLINEAR PHENOMENA 148, 227-241.
Blanchard, P., Jadczyk, A., & Olkiewicz, R., 2001. Completely mixing quantum open systems and quantum fractals. PHYSICA D-NONLINEAR PHENOMENA, 148(3-4), p 227-241.
P. Blanchard, A. Jadczyk, and R. Olkiewicz, “Completely mixing quantum open systems and quantum fractals”, PHYSICA D-NONLINEAR PHENOMENA, vol. 148, 2001, pp. 227-241.
Blanchard, P., Jadczyk, A., Olkiewicz, R.: Completely mixing quantum open systems and quantum fractals. PHYSICA D-NONLINEAR PHENOMENA. 148, 227-241 (2001).
Blanchard, Philippe, Jadczyk, A, and Olkiewicz, R. “Completely mixing quantum open systems and quantum fractals”. PHYSICA D-NONLINEAR PHENOMENA 148.3-4 (2001): 227-241.
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