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Titlebook: Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices; Josef Sikula,Michael Levinshtein Conference proceedings

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,Die vegetativen Organe der Gräser,frared and submillimeter wavelengths. The principle of bolometer operation and its noise theory are considered. The published results of bolometer noise modeling are discussed. Various sources of the excess 1/.-noise in . films are reviewed. Comparative analysis of noise characteristics of the most
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Bestselling Authors Since 1900,0.7 Hz≤f≤50 Hz a drain current spectral density is observed which follows a 1/f. law for a broad range of operation conditions. It is demonstrated that this noise is only found in the front-channel current and is observed both in SOI and bulk MOSFETs. The model proposed considers this noise as being
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Bestsellers: Popular Fiction Since 1900MOS transistors, created a need for a better understanding of the basic physics of the charge/release phenomena on the Si-nc’s. Such studies are also important because the expected retention time is interesting for practical memory applications. Here, for the first time to our knowledge, low frequen
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Best-selling Authors Since 1900,e enhancement and suppression. The enhanced mechanism is due solely to the positive feedback between tunneling and space charge, and it is a precursor of current instability. Concerning the suppression mechanism, the standard sequential tunneling model does not explain a suppression with a Fano fact
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Hanke Lange,Hanneke Beijer,Hein Abeln near the band edges, fluctuations in the space charge regions surrounding dislocations, and electron tunneling from the 2D gas into adjacent GaN or AlGaN layers. Our experimental data favor the third mechanism. Three main arguments support this tunneling mechanism: (i) the observed temperature depe
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Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices978-1-4020-2170-1Series ISSN 1568-2609
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https://doi.org/10.1007/978-3-662-40089-0laser diodes are presented taking into account the correlation between both noise sources. In the last part some prospective aspects for new research into noise of optical amplifiers are briefly reviewed.
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