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Sathyabama Institute of Science and Technology BE ECE SECA3018 Nano electronics Syllabus SATHYABAMA INSTITUTE OF SCIENCE AND TECHNOLOGY SCHOOL OF ELECTRICAL AND ELECTRONICS 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. Fahrner, “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, 2005. 6. Charles P Poole, ‘’Introduction to Nanotechnology’’, Wiley Publications, 2003. END SEMESTER EXAMINATION QUESTION PAPER PATTERN Max. Marks: 100 Exam Duration: 3 Hrs. PART A: 10 Questions of 2marks 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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