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References - Team CO0.1. D.G. Luchinsky and P.V.E. McClintock. Irreversibility of
classical fluctuations studied in analogue electrical circuits. Nature.
V.389. P.463 (1997). 0.2. D.G. Luchinsky, R. Maier, R. Mannella, P.V.E. McClintock
and D.L. Stein. Experiments on critical phenomena in a noisy exit problem.
Physical Review Letters, V.79. P.3109 (1997). 0.3. M.I. Dykman, V.N. Smelyanskiy, D.G. Luchinsky, R. Mannella,
P.V.E. McClintock and N.D. Stein. Large fluctuations in a periodically
driven dynamical system. Int. J. of Bifurcation & Chaos, V.8.
P.747 (1998). 0.4. D.G. Luchinsky, P.V.E. McClintock and M.I. Dykman. Analogue
studies of nonlinear systems. Reports on Progress in Physics, V.61.
P.889 (1998). 0.5. D.G. Luchinsky, R. Mannella, P.V.E. McClintock, M.I. Dykman,
V.N. Smelyanskiy. Thermally activated escape of driven systems: the activation
energy. J. Phys. A: Math. Gen. V.32. P.L321 (1999). 0.6. P.V.E. McClintock. Random fluctuations - Unsolved problems
of noise. Nature. V.401. P.23 (1999). 0.7. M.I. Dykman and P.V.E. McClintock. What can stochastic resonance
do? Nature. V.391. P.344 (1998). 0.8. M. Arrayas, J.M. Casado, J. Gomez Ordonez, P.V.E McClintock,
M. Morillo, N.D. Stein. Dispersion of the prehistorydistribution: Analog
experiments and numerical results. Physical Review Letters. V.80.
P.2273 (1998). 0.9. P.S. Landa and P.V.E. McClintock. Changes in the dynamical
behaviour of nonlinear systems induced by noise. Physics Reports.
V.323. P.1 (2000). 0.10. M. Arrayas, M.I. Dykman, R. Mannella, P.V.E. McClintock
and N.D. Stein. Symmetry-breaking of fluctuation dynamics by noise color.
Physical Review Letters. V.84. P.5470 (2000).
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