Resources for Volume 1

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Version 188
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1 ===This is an accompanying website for the book===
2
3 ==Lessons from Nanoelectronics: A New Perspective on Transport==
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5 * [https://www.worldscientific.com/worldscibooks/10.1142/8029 World Scientific Site] * [https://www.amazon.com/Lessons-Nanoelectronics-New-Perspective-Transport/dp/9814335290/ref=pd_sim_b_2 Amazon Site]
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7
8 ==Online Forum: Questions from Readers==
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10 Please email your questions to datta@purdue.edu. ALL questions are welcome.
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12 The forum is open to everyone, no membership is required. ''It is updated regularly to include responses to new questions.''
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14 Click here to visit the * [https://nanohub.org/groups/lnebook/questions Q&A Forum, Bottom-up Approach, Lecture 1].
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16 -
* [https://nanohub.org/groups/lnebook/Lect2to5 Q&A Forum, New Ohm’s Law, Lectures 2-5].
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* [https://nanohub.org/groups/lnebook/lect2to5 Q&A Forum, New Ohm’s Law, Lectures 2-5].
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18 -
* [https://nanohub.org/groups/lnebook/Lect18to24 Q&A Forum, Non-equilibrium Green’s Function (NEGF) Method, Lectures 18-24].
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* [https://nanohub.org/groups/lnebook/lect18to24 Q&A Forum, Non-equilibrium Green’s Function (NEGF) Method, Lectures 18-24].
19
20 ===LNE: Lessons from Nanoelectronics, World Scientific 2012===
21
22 is intended for a broad audience including students and professionals in other science and engineering disciplines.
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24 * [https://nanohub.org/groups/lnebook/File:/uploads/Datta_fmatter9237.pdf Download Table of Contents]
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26 * [https://nanohub.org/groups/lnebook/File:/uploads/Datta_1-362.pdf Download Sample Chapters 1-3]
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28 ** Part III (Lectures 18-23) of this book is devoted to making the NEGF (Non-Equilibrium Green’s Function) method accessible to non-specialists.
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30 * [https://nanohub.org/groups/lnebook/File:/uploads/Datta_Ch1929.pdf Download Sample Chapters 19-20 on NEGF]
31
32
33 ==What the book is about==
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35 Everyone is familiar with the amazing performance of a modern smartphone, powered by a billion-plus nanotransistors, each having an active region that is barely a few hundred atoms long.
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37 These lectures, however, are about a less-appreciated by-product of the microelectronics revolution, namely the deeper understanding of current flow, energy exchange and device operation that it has enabled. We
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39 * (1) introduce the seminal concepts of nanoelectronics and mesoscopic physics, and
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41 * (2) show how these concepts can be used to obtain many standard results in the transport theory of large conductors in a relatively straightforward way.
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43 This second point represents a new perspective that could be of broad relevance to the general problems of non-equilibrium statistical mechanics involving the emergence of irreversibility from reversible laws. With this in mind we have tried to make the key concepts accessible to a broad audience.
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45 Over 50 years ago David Pines in his preface to the Frontiers in Physics lecture note series articulated the need for both a consistent account of a field and the presentation of a definite point of view concerning it. That is what we have tried to provide in this book, with no intent to slight any other point of view or perspective.
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47 ===Intended audience===
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49 Students and professionals in any branch of science or engineering. We assume very little background beyond linear algebra and differential equations.
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51 For dedicated graduate students and the specialists, I have written a number of [https://nanohub.org/groups/supriyodatta/books BOOKS] in the past.
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53 But even the specialists may enjoy these notes taking a fresh look at a familiar subject, emphasizing the insights from mesoscopic physics and nanoelectronics that are of general interest and relevance.
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55 These are lecture notes in unfinished form. I hope to have a better version in the future, based on your feedback and suggestions.
56
57 ===Online Course===
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59 In Spring 2012 an online course on the Fundamentals of Nanoelectronics was offered using this book as the text. Related video lectures, quizzes, homework problems and solutions can all be accessed by going to
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61 [https://nanohub.org/courses/FON1 Self-paced course on Fundamentals of Nanoelectronics, Part I: Basic Concepts]
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63 [https://nanohub.org/courses/FON2 Self-paced course on Fundamentals of Nanoelectronics, Part II: Quantum Models]
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65 ===Introductory videos===
66
67 [https://www.youtube.com/watch?v=tW1-fSRiAdc Fundamentals of Nanoelectronics, Part I: Basic Concepts]
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69 [https://www.youtube.com/watch?v=GlsjbM9tocI Fundamentals of Nanoelectronics, Part II: Quantum Models]
70
71 ===MATLAB codes===
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73 These codes can be run on MATLAB or on the [https://nanohub.org/resources/octaview OCTAViEw] tool on nanoHUB.
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75 ===For Figures in book===
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77 [https://nanohub.org/resources/14567 Click here to access MATLAB codes for all examples in book]
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79 The codes are organized in folders, titled by the Lecture number.
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81 ===For Figures in the article “Nanoscale Device Modeling: the Green’s Function Method”===
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83 [https://nanohub.org/resources/19564 Click here to access MATLAB codes for all examples in the paper] S.Datta, Nanoscale Device Modeling: the Green’s Function Method, Superlattices and Microstructures, vol.28, p.253 (2000).