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COURSE INFORMATION
Course CodeCourse TitleL+P HourSemesterECTS
FIZ 336EXPERIMENTAL TECHNIQUES IN SEMICONDUCTORS3 + 06th Semester4

COURSE DESCRIPTION
Course Level Bachelor's Degree
Course Type Elective
Course Objective The aim of this course is to teach experimental techniques in preparation and characterization of semiconductor.
Course Content Bulk and Thin Films Semiconductor Growth Techniques, Requirements of Electrical and Optical Characterization, Measurements of Electrical Conductivity, Photoconductivity, Space Charge Limited Currents, Hall Effect, Optical Absorption and Photoluminescence.
Prerequisites No the prerequisite of lesson.
Corequisite No the corequisite of lesson.
Mode of Delivery Face to Face

COURSE LEARNING OUTCOMES
1Electronic band structure
2Electronic devices
3Growth techniques
4Fabrication
5Optical properties
6P-n junctions
7Solar cells

COURSE'S CONTRIBUTION TO PROGRAM
PO 01PO 02PO 03PO 04PO 05PO 06PO 07PO 08PO 09PO 10
LO 00143    4   
LO 0023         
LO 0033         
LO 0043         
LO 0053         
LO 0063         
LO 0073         
Sub Total223    4   
Contribution3000001000

ECTS ALLOCATED BASED ON STUDENT WORKLOAD BY THE COURSE DESCRIPTION
ActivitiesQuantityDuration (Hour)Total Work Load (Hour)
Course Duration (14 weeks/theoric+practical)14342
Hours for off-the-classroom study (Pre-study, practice)14228
Assignments21326
Mid-terms144
Final examination144
Total Work Load

ECTS Credit of the Course






104

4
COURSE DETAILS
 Select Year   


 Course TermNoInstructors
Details 2023-2024 Spring1PINAR TUNAY TAŞLI
Details 2022-2023 Spring1PINAR TUNAY TAŞLI
Details 2021-2022 Spring1PINAR TUNAY TAŞLI
Details 2020-2021 Spring1PINAR TUNAY TAŞLI
Details 2019-2020 Spring1PINAR TUNAY TAŞLI
Details 2018-2019 Spring1ORHAN KARABULUT
Details 2017-2018 Spring1ORHAN KARABULUT
Details 2015-2016 Spring1KORAY YILMAZ
Details 2014-2015 Spring1KORAY YILMAZ
Details 2013-2014 Spring1KORAY YILMAZ
Details 2012-2013 Spring1KORAY YILMAZ
Details 2011-2012 Spring1KORAY YILMAZ
Details 2010-2011 Spring1KORAY YILMAZ
Details 2009-2010 Spring1KORAY YILMAZ


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Course Details
Course Code Course Title L+P Hour Course Code Language Of Instruction Course Semester
FIZ 336 EXPERIMENTAL TECHNIQUES IN SEMICONDUCTORS 3 + 0 1 Turkish 2023-2024 Spring
Course Coordinator  E-Mail  Phone Number  Course Location Attendance
Prof. Dr. PINAR TUNAY TAŞLI ptunay@pau.edu.tr FEN B0212 %70
Goals The aim of this course is to teach experimental techniques in preparation and characterization of semiconductor.
Content Bulk and Thin Films Semiconductor Growth Techniques, Requirements of Electrical and Optical Characterization, Measurements of Electrical Conductivity, Photoconductivity, Space Charge Limited Currents, Hall Effect, Optical Absorption and Photoluminescence.
Topics
WeeksTopics
1 Semiconductor: Definition and General Properties, Energy-Band Model, Differences between Insulators, Conductors and Semiconductors, Bloch Function.
2 Effective Mass, Crystal Momentum, Density of States, Charge Carriers.
3 Semiconductor Doping, Extrinsic and Intrinsic Semiconductors, Fermi Energy in Intrinsic Semiconductors.
4 Fermi Energy in P and N type Semiconductors, Donor and Acceptor Levels.
5 Electrical Properties of Semiconductors: Mobility, Conduction and Conduction Mechanisms.
6 Minority and Majority Carrier Concentrations, Carrier Lifetime and Diffusion Length Constants.
7 Hall Effect in Semiconductors, Hall Constant.
8 Sample Questions and Applications.
9 Midterm Exam
10 Typical Energy Bands in Semiconductors, Amorphous Semiconductors and Their Properties, Mott Transport: Metallic Behavior of Semiconductors.
11 Semiconductor Devices: P-N Junctions and Junction Properties, Depletion Region, Built-in Potential, Photovoltaics.
12 Forward and Reverse Bias Conditions in P-N Junctions, Current Mechanisms, Junction Capacitance, PNP and NPN Tansistors, Current Mechanisms, Power Gain.
13 Tunnel Diode, Zener Diode, Gunn Diode, FETs, MOSFETs, Schottky Diodes (Metal-Semiconductor Junctions).
14 Optical Properties of Semiconductors: Photocurrent, Optical Absorption, Luminescence, Photo- Luminescence, Electro- Luminescence, Cathode- Luminescence, Sample Questions.
Materials
Materials are not specified.
Resources
Course Assessment
Assesment MethodsPercentage (%)Assesment Methods Title
Final Exam60Final Exam
Midterm Exam40Midterm Exam
L+P: Lecture and Practice
PQ: Program Learning Outcomes
LO: Course Learning Outcomes