Nano-Photonics detail syllabus for Nanoelectronics (Nano), 2017 scheme is taken from VTU official website and presented for VTU students. The course code (17NT831), and for exam duration, Teaching Hr/week, Practical Hr/week, Total Marks, internal marks, theory marks, duration and credits do visit complete sem subjects post given below.
For all other nano 8th sem syllabus for be 2017 scheme vtu you can visit Nano 8th Sem syllabus for BE 2017 Scheme VTU Subjects. For all other Professional Elective-V subjects do refer to Professional Elective-V. The detail syllabus for nano-photonics is as follows.
Course Objectives:
- To understand the basic principles of Photonics and its importance
- To study the nano-photonics its fabrication and applications
Module 1:
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Module 2:
FOUNDATIONS OF NANO-PHOTONICS Photons and electrons: similarities and differences, Free space propagation. Confinement of photons and electrons. Propagation through a classically forbidden zone: tunnelling. Localization under a periodic potential: Band gap. Cooperative effects for photons and electrons, Nanoscale optical interactions, axial and lateral nanoscopic localization. Nanoscale confinement of electronic interactions: Quantun confinement effects, nanoscale interaction dynamics, nanoscale electronic energy transfer. Cooperative emissions.
Module 3:
FABRICATION AND APPLICATIONS OF PHOTONIC CRYSTALS AND DEVICES Thermal, mechanical and chemical properties of optical materials; Optical coatings and methods; Optical Filters; Surface quality of optical components. Choices of materials in photonic crystals: semiconductors, amorphous, and polymers, fabrication of photonic crystals structures (1-D, 2-D); Couplers; Waveguides; Photonic crystals fibres; Tunable Photonic crystal filter; High-Q cavites.
Module 4:
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Module 5:
FUNDAMENTALS OF NANO-PHOTONIC SYSTEMS Introduction – Optical excitation transfer and system fundamentals -Parallel architecture using optical excitation transfer: memory based architecture, Global Summation Using Near-Field Interactions; Interconnections for nano-photonics – Signal transfer and environment – tamper resistance – Hierarchy in nano-photonics and its system fundamentals, Hierarchical Memory Retrieval, Analysis and Synthesis of Hierarchy in Nano-photonics, Hierarchy Plus Localized Energy Dissipation: Traceable Memory.
Course Outcomes:
Students can
- understand the basic principles of Photonics and its importance
- Study the nano-photonics its fabrication and applications
Graduate Attributes (as per NBA):
- Engineering Knowledge.
- Problem Analysis.
- Design / development of solutions (partly).
- Interpretation of data.
Question paper pattern:
- The question paper will have ten questions.
- Each full Question consisting of 20 marks
- There will be 2 full questions (with a maximum of four sub questions) from each module.
- Each full question will have sub questions covering all the topics under a module.
- The students will have to answer 5 full questions, selecting one full question from each module.
Text Books:
- Principals of Nanophotonics (Optics and Optoelectronics), M. Ohtsu, K. Kobayashi, T. Kawazoe and T. Yatsui, University of Tokyo,Japan,2003
- Nanophotonics, P N Prasad, John Wiley & Sons ( 2004)
- Photonic Crystals: Towards Nanoscale Photonic Devices; Jean Michel Lourtioz, Springer; ISBN 354024431X3.
Reference Books:
- NanoBiophotoics, H.Masuhara,SKawata and F TokungaElsevier Science 2007
- Fundamentals of Photonics, BEA Saleh and AC Teich, John Wiley and Sons,NewYork,1993
- Introduction to Biophotonics, P.N.Prasad, John Wiley and Sons, 2003.
- Fundamentals of Photonic Crystal Fibres; Fredric Zolla- Imperial College Press. ISBN 1860945074.
For detail syllabus of all other subjects of BE Nano, 2017 regulation do visit Nano 8th Sem syllabus for 2017 Regulation.
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