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Quantum 1/f Noise in High Technology Applications Including Ultrasmall Structures and Devices.

机译:包括超小结构和器件在内的高科技应用中的量子1 / f噪声。

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This report summarizes progress achieved this year both in the more general formulation of our new criterion for nonlinear systems which allows us to tell right away if a chaotic system will exhibit a l/f spectrum, and in the application and further study of the quantum l/f effect. The general criterion was applied to a one-dimensional crystal with anharmonic interactions, predicting for the first time a l/f phonon number spectrum in the chaotic regime at very low frequencies and always when cubic terms are dominant in the potential energy. The quantum l/f theory was applied to a quartz resonator directly for the first time, providing both an explanation for the observed l/f frequency fluctuations and optimization means. Our new formula for collector l/f noise in ultrasmall BJT's was found to agree reasonably with the experiment.

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