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- W2766743082 abstract "The conventional Quantum 1/f (Q1/f) Effect is present in any scattering cross section or process rate involving charged particles or current carriers. The present paper shows how bremsstrahlung and decoherence at all frequencies yield macroscopic quantum interference, resulting in probability density fluctuations at all frequencies in the outgoing scattered beam, that are observed as fundamental base-band 1/f noise and as 1/f frequency fluctuations, or phase noise close to carrier, in materials, devices, and resonant or non-resonant systems. We emphasize the role of the phenomenon of quantum decoherence showing that the fundamental, universal 1/f noise is both a phenomenon of decoherence and of the infrared divergence of quantum electrodynamics. This eliminates the last persisting misunderstandings of the Q1/f Theory and of this new field of Infra-quantum Physics. On this basis we give the first universal engineering formulas, applicable for the ultra-low noise optimization of all Hi-Tech applications, of the materials, devices and systems of modern industry, microelectronics, nanotechnology, highest stability resonators, oscillators and clocks, MEMS, and any resonant and non-resonant sensors. Q1/f noise, i.e, the coherent and conventional Q1/f Effects, is a new fundamental aspect of quantum physics, as basic as space and time. In resonators and oscillators, fundamental frequency fluctuations come usually from 1/f fluctuations in the dissipation." @default.
- W2766743082 created "2017-11-10" @default.
- W2766743082 creator A5024989358 @default.
- W2766743082 date "2017-07-01" @default.
- W2766743082 modified "2023-10-01" @default.
- W2766743082 title "Quantum theory of 1/f frequency fluctuations macroscopic quantum interference present in fundamental 1/f noise measured since 1925" @default.
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- W2766743082 doi "https://doi.org/10.1109/fcs.2017.8088861" @default.
- W2766743082 hasPublicationYear "2017" @default.
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