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Five year integrated MSc Degree Course in Photonics.pdf

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MODULE 3<br />

Control and Management _ Network management function, configuration-performance- and fault<br />

managements. Optical safely, Wavelength rout<strong>in</strong>g test beds- AON. NTTR, ONTC, MONET.<br />

MODULE 4<br />

Access network- Network architecture, HFC. FTTC. Optical Acces Network architecture,<br />

deployment considerations- upgrad<strong>in</strong>g the transmission capacity- SDM, TDM, WDM, Application<br />

areas -<strong>in</strong>ter exchange, undersea, local exchange networks Packag<strong>in</strong>g and cabl<strong>in</strong>g of <strong>Photonics</strong><br />

componets - Photonic packet switch<strong>in</strong>g, OTDM, multiplex<strong>in</strong>g and demultiplex<strong>in</strong>g, Optical logic<br />

gates, Synchronization, broadcast OTDM.<br />

network. OTDM testbeds.<br />

REFERENCES<br />

I. Optical Networks - A Practical applications - R Ramaswami and K N Sivarajan - Marcourt<br />

Asia (2000)<br />

Photonic switch<strong>in</strong>g technology - H T Mouftah, J M H Elmirghani - IEE Press (1999)<br />

Deploy<strong>in</strong>g Optical Network<strong>in</strong>g components - Oil Held, McCraw Hill (2001)<br />

4. Optical Interconnection-C Tocci, HI Caulfield, Artech House (1999)<br />

CEL 2E 13 BIO-PHOTONICS<br />

Topics for read<strong>in</strong>g: Fundamentals of light as matter, basics of biology, fundamentals of light<br />

matter <strong>in</strong>teractions, lasers, laser technology, nonl<strong>in</strong>ear optics (<strong>in</strong>troduction to bio-photonics by<br />

PN Prasad , Chapter 1 — 6).<br />

MODULE 1<br />

Photobiology; <strong>in</strong>teraction of light with cells with cells and tissues, Photo-process <strong>in</strong> Biopolymershuman<br />

eve and vision, Photosynthesis; Photo-excitation — free space propagation, optical fibre<br />

delivery system, articulated arm delivery, hollow tube wave-guides.<br />

Optical coherence Tomogaphy, Fluorescence, resonance energy transfer imag<strong>in</strong>g.<br />

MODULE 2<br />

Bio-imag<strong>in</strong>g: Transmission microscopy, Kohler illum<strong>in</strong>ation, microscopy based on phase contrast,<br />

dark-field and differential <strong>in</strong>terference contrast microscopy, Florescence, confocal and multiphoton<br />

microscopy.<br />

Optical Biosensors: Florescence and energy transfer sens<strong>in</strong>g, molecular beacons and optical<br />

geometries of bio-sens<strong>in</strong>g, Biosensors based on fibre optics, planer waveguides, Flow Cytometry:<br />

basis, flurochromes for flow cytometry, DNA analysis.<br />

MODULE 3<br />

Laser activated therapy; Photodynamic therapy, photo-sensitizers for photodynamic therapy,<br />

applications of photodynamic therapy, two photon photodynamic therapy. Tissue eng<strong>in</strong>eer<strong>in</strong>g<br />

us<strong>in</strong>g light; contour<strong>in</strong>g and restructur<strong>in</strong>g of tissues us<strong>in</strong>g laser, laser tissue regeneration, femtosecond<br />

laser surgery.<br />

CENTRE OF EXCELLENCE IN LASERS AND OPTOELECTRONICS SCIENCES<br />

54

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