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Risorsa bibliografica obbligatoria |
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Risorsa bibliografica facoltativa |
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Anno Accademico
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2015/2016
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Scuola
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Scuola di Ingegneria Industriale e dell'Informazione |
Insegnamento
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097516 - GRAPHENE AND NANOELECTRONIC DEVICES [I.C.]
- 097513 - GRAPHENE NANOELECTRONICS AND NANOFABRICATION
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Docente |
Sordan Roman
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Cfu |
5.00
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Tipo insegnamento
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Modulo Di Corso Strutturato
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Corso di Studi |
Codice Piano di Studio preventivamente approvato |
Da (compreso) |
A (escluso) |
Insegnamento |
Ing Ind - Inf (Mag.)(ord. 270) - MI (486) ENGINEERING PHYSICS - INGEGNERIA FISICA | * | A | ZZZZ | 097516 - GRAPHENE AND NANOELECTRONIC DEVICES [I.C.] | 097606 - GRAPHENE NANOELECTRONICS |
Programma dettagliato e risultati di apprendimento attesi |
The course is focused on the extraordinary physical properties of graphene and their application in the development of graphene nanoelectronic devices. The main goal of the course is to provide a comprehensive understanding of the state-of-the-art graphene ultrafast electronics (operating at > 100 GHz) and realistically evaluate possible applications of graphene in modern electronics. The course also presents the state-of-the-art methods for the fabrication of the electronic devices at the nanoscale providing the comprehensive understanding of the fabrication methods used both in industry and research laboratories. The course covers the following topics:
Introduction to carbon-based material
- Allotropes and hybridization of carbon
- Band spectrum and massless Dirac fermions in graphene
- The origin of high charge carrier mobility in graphene
- Comparison with carbon nanotubes
- Klein paradox and half-integer quantum Hall effect
Graphene field effect transistors (FETs)
- The importance of high mobility in electronic devices and circuits
- Comparison between graphene and conventional FETs
- Ambipolarity of graphene FETs
- Electrostatic doping in graphene electronic circuits
- The importance of drain current saturation and voltage gain
- Impact of contact resistance on the properties of graphene FETs
- Scaling and short-channel effects
- Impact of band gap opening in graphene on FET properties
Small-signal model of graphene FETs
- Low-frequency AC small signal model of FETs (hybrid-pi model)
- Determination of transconductance gm and output conductance gd
Voltage and current gain
- Definition of voltage and current gains
- Intrinsic voltage gain gm/gd and intrinsic current gain h21
High-frequency model of graphene FETs
- Extrinsic high-frequency model of FETs
- Phasors in electronic circuits
Cutoff frequency fT of graphene FETs
- Intrinsic and extrinsic cutoff frequency fT of graphene FETs
- Comparison of graphene and conventional FETsin terms of fT
- h and Y parameter models of two-port networks
- Cutoff frequency from Y parameters
Power gain and maximum frequency of oscillation fmax of graphene FETs
- Definition of power gain
- Intrinsic and extrinsic maximum frequency of oscillation fmax of graphene FETs
- Comparison of graphene and conventional FETsin terms of fmax
- S parameters of two-port networks
Graphene electronic circuits
- Graphene Moore’s law
- Voltage gain and multi-stage circuits
- Noise margin
- Static and dynamic power dissipation
- Graphene electronic circuits: amplifiers, mixers, frequency multipliers, logic gates
- Realistic gate delays and graphene ring oscillators
Nanodevice Fabrication
- Introduction to lithography
- Deep ultraviolet lithography
- Resolution enhancement technologies
- Extreme ultraviolet lithography
- Electron beam lithography
- Alternative lithographic technologies
- Pattern transfer
- Nanofabrication of graphene nanoelectronic devices and circuits
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Note Sulla Modalità di valutazione |
Students will be evaluated by oral examination
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Luis E. F. Foa Torres, Stephan Roche, Jean-Christophe Charlier, Introduction to Graphene-Based Nanomaterials - From Electronic Structure to Quantum Transport, Anno edizione: 2014, ISBN: 9781107030831
Juin J. Liou, Frank Schwierz, Hei Wong, Nanometer CMOS, Anno edizione: 2010, ISBN: 9814241083
Zheng Cui, Nanofabrication - Principles, Capabilities and Limits, Anno edizione: 2008, ISBN: 978-0-387-75576-2
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Nessun software richiesto |
Tipo Forma Didattica
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Ore didattiche |
lezione
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28.0
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esercitazione
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18.0
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laboratorio informatico
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0.0
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laboratorio sperimentale
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4.0
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progetto
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0.0
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laboratorio di progetto
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0.0
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Informazioni in lingua inglese a supporto dell'internazionalizzazione |
Insegnamento erogato in lingua

Inglese
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Disponibilità di materiale didattico/slides in lingua inglese
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Disponibilità di libri di testo/bibliografia in lingua inglese
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Possibilità di sostenere l'esame in lingua inglese
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Disponibilità di supporto didattico in lingua inglese
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