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Sathyabama Institute of Science and Technology BE EEE SECA3018 NANO Electronics Syllabus SATHYABAMA INSTITUTE OF SCIENCE AND TECHNOLOGY SCHOOL OF ELECTRICAL AND ELECTRONICS ENGINEERING SECA3018 NANO ELECTRONICS L T P Credits Total Marks 3 0 0 3 100 UNIT 1 QUANTUM MECHANICS 9 Hrs. Quantum principles - Schrodinger equations and solutions - particle in a Box-particle in a finite well - Density of states- Ballistic transport- Eigen values and Eigen functions-mobility- Free electron Theory-Superconductivity-Josephson effects. . UNIT 2 NANOSTRUCTURES 9 Hrs. Semiconductor classifications - Electronic properties - Band theory of solids - Bloch Theorem-Hall effects-Optical propertiesoptical absorption and transmission-photoluminescence-Fluorescence- Electroluminescence-Magnetic properties- Diamagnetism-Paramagnetism-Ferromagnetism and Ferrimagnetisms. UNIT 3 NANOSCALE DEVICES 9 Hrs. Quantum dots devices -Resonant Tunnelling Transistor -Single Electron Devices and its properties-Carbon Nano Tube Transistors and its properties- Graphene Transistors and its properties-FET and its properties Spintronics. UNIT 4 NANOSENSORS 9 Hrs. Biosensors and its fabrication-DNA based sensors-Protein based sensors and its properties- fabrication of biosensors- Gas sensors and its properties-Gas sensor based on semiconductor devices-Molecular sensors and its properties – Piezoelectric sensors- LOAC microfluidic sensors. UNIT 5 NANOSCALE MEMORY DEVICES 9 Hrs. Semiconductor memory devices-SRAM-Single electron memory and its circuits-Ferroelectric Random access memory and its circuits –Non-volatile memory-Memristor based memory and its properties. Max. 45 Hrs. COURSE OUTCOMES On completion of the course, student will be able to CO1 - Understand the electronic properties of materials at the nanoscale quantum devices and principles. CO2 - Know the various properties of Nano devices. CO3 - Design the nanoscale based circuits with simulation tools. CO4 - Understand the sensors and memory devices. CO5 - Understand the various types of Nano sensors. CO6 - Analyse various nanoscale memory devices. TEXT / REFERENCE BOOKS 1. W.R. Fahmer , “Nanotechnology and Nanoelectronics: Materials, Devices”, Springer, 2010. 2. K.P.Jain, “Physics of semiconductor Nanostructures”, Narosa Publishers, Reprint. 3. Karl Goser, ”Nanoelectronics and Information Technology”, 2nd Edition, Wiley VCH, 2003. 4. George W.Hanson, “Fundamentals of Nanoelectronics”, Prentice Hall, 2008. 5. Robert Kelsall, ‘’Nanoscale Science and Technology’’, Willey Publication, Reprint. 6. Charles P Poole, ‘’Introduction to Nanotechnology’’, Wiley Publications, reprint. END SEMESTER EXAMINATION QUESTION PAPER PATTERN Max. Marks: 100 Exam Duration: 3 Hrs. PART A: 10 Question of 2 marks each – No choice 20 Marks PART B: 2 Questions from each unit of internal choice; each carrying 16 marks 80 Marks |
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