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Universal oscillations in counting statistics

delete2009-06-23
delete214
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OA
AI
C
Christian Flindt *
C
C. Fricke
F
F. Hohls
T
Tomáš Novotný
K
Karel Netočný
T
Tobias Brandes
R
R. J. Haug
DOI:10.1073/pnas.0901002106delete
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Abstract

Abstract

En 中文
Noise is a result of stochastic processes that originate from quantum or classical sources. Higher-order cumulants of the probability distribution underlying the stochastic events are believed to contain details that characterize the correlations within a given noise source and its interaction with the environment, but they are often difficult to measure. Here we report measurements of the transient cumulants << n(m)>> of the number n of passed charges to very high orders (up to m = 15) for electron transport through a quantum dot. For large m, the cumulants display striking oscillations as functions of measurement time with magnitudes that grow factorially with m. Using mathematical properties of high-order derivatives in the complex plane we show that the oscillations of the cumulants in fact constitute a universal phenomenon, appearing as functions of almost any parameter, including time in the transient regime. These ubiquitous oscillations and the factorial growth are system-independent and our theory provides a unified interpretation of previous theoretical studies of high-order cumulants as well as our new experimental data.
Keywords:
cumulants
distributions
electron transport
noise and fluctuations
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Journal

P
Proceedings of the National Academy of Sciences of the United States of America
IF:
9.1
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10.8W
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73.5W

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Institute of Physics of the Czech Academy of Sciences
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Leibniz University Hannover
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Harvard University
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czech academy of sciences
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C
Charles University Prague
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