Modeling Self-Heating Effects in Nanoscale Devices

Nonfiction, Science & Nature, Science, Other Sciences, Nanostructures, Physics, Electricity, General Physics
Cover of the book Modeling Self-Heating Effects in Nanoscale Devices by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick, Morgan & Claypool Publishers
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick ISBN: 9781681741871
Publisher: Morgan & Claypool Publishers Publication: September 13, 2017
Imprint: IOP Concise Physics Language: English
Author: Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
ISBN: 9781681741871
Publisher: Morgan & Claypool Publishers
Publication: September 13, 2017
Imprint: IOP Concise Physics
Language: English

It is generally acknowledged that modeling and simulation are preferred alternatives to trial and error approaches to semiconductor fabrication in the present environment, where the cost of process runs and associated mask sets is increasing exponentially with successive technology nodes. Hence, accurate physical device simulation tools are essential to accurately predict device and circuit performance.

Accurate thermal modelling and the design of microelectronic devices and thin film structures at the micro- and nanoscales poses a challenge to electrical engineers who are less familiar with the basic concepts and ideas in sub-continuum heat transport. This book aims to bridge that gap. Efficient heat removal methods are necessary to increase device performance and device reliability. The authors provide readers with a combination of nanoscale experimental techniques and accurate modelling methods that must be employed in order to determine a device's temperature profile.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

It is generally acknowledged that modeling and simulation are preferred alternatives to trial and error approaches to semiconductor fabrication in the present environment, where the cost of process runs and associated mask sets is increasing exponentially with successive technology nodes. Hence, accurate physical device simulation tools are essential to accurately predict device and circuit performance.

Accurate thermal modelling and the design of microelectronic devices and thin film structures at the micro- and nanoscales poses a challenge to electrical engineers who are less familiar with the basic concepts and ideas in sub-continuum heat transport. This book aims to bridge that gap. Efficient heat removal methods are necessary to increase device performance and device reliability. The authors provide readers with a combination of nanoscale experimental techniques and accurate modelling methods that must be employed in order to determine a device's temperature profile.

More books from Morgan & Claypool Publishers

Cover of the book Communities of Computing by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Metaphor by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Radiative Properties of Semiconductors by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Skin Photoaging by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Theories of Matter, Space, and Time by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Essential Semiconductor Laser Physics by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Sterile Neutrino Dark Matter by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Advanced Numerical Techniques for Photonic Crystals by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Applied Digital Logic Exercises Using FPGAs by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Quantum Metrology with Photoelectrons by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Judgment Aggregation by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book A Guide to Convolutional Neural Networks for Computer Vision by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Cold Plasma Cancer Therapy by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Halo Nuclei by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
Cover of the book Ada's Legacy by Katerina Raleva, Abdul Rawoof Sheik, Dragica Vasileska, Stephen M. Goodnick
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy