Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices

This book PDF is perfect for those who love Technology & Engineering genre, written by Josef Sikula and published by Springer Science & Business Media which was released on 21 February 2006 with total hardcover pages 371. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices books below.

Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices
Author : Josef Sikula
File Size : 54,5 Mb
Publisher : Springer Science & Business Media
Language : English
Release Date : 21 February 2006
ISBN : 9781402021701
Pages : 371 pages
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Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices by Josef Sikula Book PDF Summary

A discussion of recently developed experimental methods for noise research in nanoscale electronic devices, conducted by specialists in transport and stochastic phenomena in nanoscale physics. The approach described is to create methods for experimental observations of noise sources, their localization and their frequency spectrum, voltage-current and thermal dependences. Our current knowledge of measurement methods for mesoscopic devices is summarized to identify directions for future research, related to downscaling effects. The directions for future research into fluctuation phenomena in quantum dot and quantum wire devices are specified. Nanoscale electronic devices will be the basic components for electronics of the 21st century. From this point of view the signal-to-noise ratio is a very important parameter for the device application. Since the noise is also a quality and reliability indicator, experimental methods will have a wide application in the future.

Advanced Experimental Methods for Noise Research in Nanoscale Electronic Devices

A discussion of recently developed experimental methods for noise research in nanoscale electronic devices, conducted by specialists in transport and stochastic phenomena in nanoscale physics. The approach described is to create methods for experimental observations of noise sources, their localization and their frequency spectrum, voltage-current and thermal dependences. Our current

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