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Maharaja Ranjit Singh Punjab Technical University, Punjab
Computer Engineering
Physics (Semiconductor Physics)
Maharaja Ranjit Singh Punjab Technical University, Punjab, Computer Engineering Semester 1, Physics (Semiconductor Physics) Syllabus
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Unit - 1 Quantum Theory
1.1 NEED AND ORIGIN OF QUANTUM CONCEPT
1.2 WAVEPARTICLE DUALITY MATTER WAVES
1.3 GROUP AND PHASE VELOCITIES
1.4 CONCEPT OF UNCERTAINTY PRINCIPLE AND ITS APPLICATION NONEXISTENCE OF ELECTRON IN THE NUCLEUS
1.5 WAVE FUNCTION ITS SIGNIFICANCE NORMALIZATION OF WAVE FUNCTION
1.6 SCHRODINGER WAVE EQUATION TIME INDEPENDENT AND DEPENDENT
1.7 EIGEN FUNCTIONS EIGEN VALUES PARTICLE IN A BOX IN 1D
1.8 CONCEPT OF SCATTERING FROM A POTENTIAL BARRIER AND TUNNELING
Unit - 1 Quantum Theory
1.1 NEED AND ORIGIN OF QUANTUM CONCEPT
1.2 WAVEPARTICLE DUALITY MATTER WAVES
1.3 GROUP AND PHASE VELOCITIES
1.4 CONCEPT OF UNCERTAINTY PRINCIPLE AND ITS APPLICATION NONEXISTENCE OF ELECTRON IN THE NUCLEUS
1.5 WAVE FUNCTION ITS SIGNIFICANCE NORMALIZATION OF WAVE FUNCTION
1.6 SCHRODINGER WAVE EQUATION TIME INDEPENDENT AND DEPENDENT
1.7 EIGEN FUNCTIONS EIGEN VALUES PARTICLE IN A BOX IN 1D
1.8 CONCEPT OF SCATTERING FROM A POTENTIAL BARRIER AND TUNNELING
Unit - 2 Electronic materials
2.1 FREE ELECTRON THEORY
2.2 DENSITY OF STATES
2.3 ENERGY BAND DIAGRAMS INTRODUCTION TO BAND GAP THEORY
2.4 DIRECT AND INDIRECT BAND GAPS
2.5 TYPES OF ELECTRONIC MATERIALS METALS SEMICONDUCTORS AND INSULATORS
2.6 OCCUPATION PROBABILITY
2.7 FERMI LEVEL
2.8 EFFECTIVE MASS
2.9 PHONONS
Unit - 3 Semiconductors and Light semiconductors interactions
3.1 INTRINSIC AND EXTRINSIC SEMICONDUCTORS
3.2 DEPENDENCE OF FERMI LEVEL ON CARRIERCONCENTRATION AND TEMPERATURE EQUILIBRIUM CARRIER STATISTICS
3.3 CARRIER GENERATION AND RECOMBINATION
3.4 CARRIER TRANSPORT DIFFUSION AND DRIFT
3.5 PN JUNCTION
3.6 METALSEMICONDUCTOR JUNCTION OHMIC AND SCHOTTKY
3.7 SEMICONDUCTOR MATERIALS OF INTEREST FOR OPTOELECTRONIC DEVICES
3.8 OPTICAL TRANSITIONS IN BULK SEMICONDUCTORS ABSORPTION SPONTANEOUS EMISSION AND STIMULATED EMISSION
3.9 LASERS PRINCIPLES AND WORKING OF LASER
3.10 POPULATION INVERSION
3.11 PUMPING
3.12 TYPES OF LASERS WITH EMPHASIS ON THE SEMICONDUCTOR LASERS.
Unit - 4 Fibre Optics Communication
4.1 INTRODUCTION AND IMPORTANCE OF USE OF OPTICAL FIBRES IN DATA TRANSMISSION
4.2 IMPORTANCE OF USE OF OPTICAL FIBRES IN DATA TRANSMISSION
4.2 OPTICAL FIBRE AS A DIELECTRIC WAVE GUIDE TOTAL INTERNAL REFLECTION
4.3 NUMERICAL APERTURE AND VARIOUS FIBRE PARAMETERS
4.4 LOSSES ASSOCIATED WITH OPTICAL FIBRES
4.5 STEP AND GRADED INDEX FIBRES
4.6 APPLICATIONS OF OPTICAL FIBRES
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Other Subjects of Semester-1
Basic electrical engineering
Engineering graphics & design
Mathematics-i (calculus, linear algebra)
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