Politecnico di Torino
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Politecnico di Torino
Anno Accademico 2013/14
01OVDOQ, 01OVDOT, 01OVDOV, 01OVDPE
Materials for information and communication technologies
Corso di Laurea Magistrale in Ingegneria Elettronica (Electronic Engineering) - Torino
Corso di Laurea Magistrale in Ingegneria Delle Telecomunicazioni (Telecommunications Engineering) - Torino
Corso di Laurea Magistrale in Ingegneria Informatica (Computer Engineering) - Torino
Espandi...
Docente Qualifica Settore Lez Es Lab Anni incarico
Chen Qiuping ORARIO RICEVIMENTO AC ING-IND/22 48 12 0 3
SSD CFU Attivita' formative Ambiti disciplinari
ING-IND/22 6 D - A scelta dello studente A scelta dello studente
Esclusioni:
01OVA; 01OUW; 01OVC; 01OVF; 01OVE; 01OUX; 01OUY; 01OUZ; 01OVB
Presentazione
This course is mainly designed for students of Master of Science (Laurea Magistrale ) enrolled in Electronic EngineeringC Computer EngineeringC Nanotechnologies For Icts Cand Telecommunications Engineering. The main objective of this course is
-to introduce knowledge of materials e.g. glass matrix and their properties that make them very gspecial g for application in ICT devices;
-to introduce knowledge about the relationship between a glass matrix and ICT devices,
- to induce techniques for transferring a material into a ICT devices
These will allow students to get multidisciplinary knowledge with materials that could be exploited for ICT devices design and fabrication, as well as knowledge for design and fabrication of glass materials with suitable properties that meet the requirements of new devices identified by ICT sector.

At the end of the study , students should have had the ability for glass design , fabrication and characterization and device demonstration for some application though laboratory works .
Risultati di apprendimento attesi
At the end of the study , students should have had the following specific knowledge :

The structure of the glass and the relationship between the structure and their properties
Why the glass is special for ICT applications
For design of an optical device based on glass , which are important factors to be highly considered .
What is the photosensitivity of a glass , how can obtain a glass with high photosensitivity
Which kind of applications or devices can be designed based on the glass photosensitivity
In a optical telecommunication system , which roles that a glass fibre can play , which are the requirements for a glass fiber
What is a single mode fiber , how to design and fabricate a single mode fibre
What is an active glass , how to characterize an active glass
What is the non linear property of a glass , how to enhance the non linear properties of a glass.
what is a waveguide , how to realize a waveguide
what is a magnetic-optical glass , which devices and applications they could have

Students should have had the ability for glass design , fabrication and characterization and device demonstration for some application though laboratory works .
Prerequisiti / Conoscenze pregresse
Adequate knowledge obtained by students from their previous study in their course in Electronic EngineeringC Computer EngineeringC Nanotechnologies For Icts Cand Telecommunications Engineering are sufficient for following this course .
Programma
- Overview on glasses
- Optical properties of glasses and their applications in photonics; glass characterization techniques
- Photosensitive glasses and their applications
- Optical waveguides and their fabrication techniques: CVD, PVD, ion-exchange. Measurement and characterization of optical waveguides
– Glass preparation
- Optical fibers and their fabrication and characterization techniques
- Active glasses and their applications
- Glasses sensible to electric field (poled glasses) and their applications
- Magnetic-optical glasses
- Glasses for Lab-on Chip
Organizzazione dell'insegnamento
The total hours of the course is 60 , among which ,48 hours are lecture in classroom and 12 hours in lab.
Organization of works in lab will be in the department of DISAT and in Photoniclab of Istituto Mario Boella with glass design , fabrication , characterization and devices demonstration for some application .
Testi richiesti o raccomandati: letture, dispense, altro materiale didattico
The PPT presentations for use of the teaching have been uploaded in il portale della didattica for students enrolled in the course ( https://didattica.polito.it/pls/portal30/sviluppo.pagina_corso.main?t=3).


Reference book : Yamane and Asahara : gGlasses for Photonicsh

Kasap: Optoelectronics and Photonics
T. S. Izumitani, gOptical Glassh, American Institute of Physics Translation series 10
Hoya Catalog http://micro.magnet.fsu.edu/primer/anatomy/fieldcurvature.html
Criteri, regole e procedure per l'esame
The exam of the course is writing , with maximum score of 30 and minimum 18 for pass , which will be evaluated both from the knowledge and ability that the student have had from the course .
Knowledge evaluation :

The structure of the glass and the relationship between the structure and their properties ( 3 )
Why the glass is special for ICT applications (2)
For design of an optical device based on glass , which are important factors to be highly considered (3)
What is the photosensitivity of a glass , how can obtain a glass with high photosensitivity(2)
Which kind of applications or devices can be designed based on the glass photosensitivity(2)
In a optical telecommunication system , which roles that a glass fibre can play , which are the requirements for a glass fiber(3)
What is a single mode fiber , how to design and fabricate a single mode fibre (5)
What is an active glass , how to characterize an active glass (3)
What is the non linear property of a glass , how to enhance the non linear properties of a glass(2)
what is a waveguide , how to realize a waveguide (3)
what is a magnetic-optical glass , which devices and applications they could have(2)

evaluation of ability for design , fabrication , characterization and device demonstration ( 5)
Orario delle lezioni
Statistiche superamento esami

Programma definitivo per l'A.A.2014/15
Indietro



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