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Course Information
Course Unit Title : Introduction to Accelerator Physical
Course Unit Code : 01FZK5166
Type of Course Unit : Optional
Level of Course Unit : Second Cycle
Year of Study : 1
Semester : 1.Semester
Number of ECTS Credits Allocated : 6,00
Name of Lecturer(s) : ---
Course Assistants :
Learning Outcomes of The Course Unit : 1) Introduction to accelerators
2) Equation of motions, transfer matrices
3) Mechanics of trajectroy
4) Optical Elements
5) Latice excercises
Mode of Delivery : Face-To-Face
Prerequisities and Co-requisities Courses : Unavailable
Recommended Optional Programme Components : Unavailable
Course Contents : Introduction to accelerators, equation of motions, mechanics of trajectories, optical elemets and focusing.
Languages of Instruction : Turkish
Course Goals :
Course Aims : Provide a concise and coherent introduction to the physics of accelerators.
WorkPlacement   Not Available
Recommended or Required Reading
Textbook : Conte, M. , MacKey, W.W. ?Physics of Accelerators?, World Scientist
Additional Resources : Web pages : FANL, CERN, SLAC
Material Sharing
Documents : Text Book
Assignments : 10
Exams : 1 mid term 1 final
Additional Material :
Planned Learning Activities and Teaching Methods
Lectures, Practical Courses, Presentation, Seminar, Project, Laboratory Applications (if necessary)
ECTS / Table Of Workload (Number of ECTS credits allocated)
Student workload surveys utilized to determine ECTS credits.
Activity :
Number Duration Total  
Course Duration (Excluding Exam Week) :
14 3 42  
Time Of Studying Out Of Class :
14 4 56  
Homeworks :
10 5 50  
Presentation :
0 0 0  
Project :
0 0 0  
Lab Study :
0 0 0  
Field Study :
0 0 0  
Visas :
1 7 7  
Finals :
1 10 10  
Workload Hour (30) :
30  
Total Work Charge / Hour :
165  
Course's ECTS Credit :
6      
Assessment Methods and Criteria
Studies During Halfterm :
Number Co-Effient
Visa :
1 50
Quiz :
0 0
Homework :
10 50
Attendance :
0 0
Application :
0 0
Lab :
0 0
Project :
0 0
Workshop :
0 0
Seminary :
0 0
Field study :
0 0
   
TOTAL :
100
The ratio of the term to success :
50
The ratio of final to success :
50
TOTAL :
100
Weekly Detailed Course Content
Week Topics  
1 Introduction, Direct Voltage Accelerators, Linear and Circular Accelerators
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 1, Pages: 1-18
2 Equation of Motion for weak focusing, transfer matrices
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 2, Pages: 19-24
3 Equation of Motion for weak focusing, momentum dispersion
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 2, Pages: 24-32
4 Mechanics of the trajectroy, Liouville?s Theorem
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 3, Pages: 33 - 37
5 Mechanics of the trajectroy, Hamiltonian formalisim
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 3, Pages: 38 - 54
6 Optical elements with static magnetic field, transverse fields, quadrupole lenses
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 4, Pages: 55 ? 69
7 Strong focusing, transfer matrix approach, Emittances
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 5, Pages: 70 - 79
8 Strong focusing, adiabatic inveriants, dispersion
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 5, Pages: 80 - 86
9 Latice Exercies, The FODO latice, FODO cell dispersion
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 6, Pages: 87 -90
10 Latice Exercies, Twiss Matrix, Insertion, Chromaticity
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 6, Pages: 91 - 103
11 Synchotron Oscillations, Transition Energy, The Pahse stability Princible
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 7, Pages: 107 - 110
12 Synchotron Oscillations,Large Oscilations, Adiabatic Inveriance
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 7, Pages: 111 - 132
13 Synchotron Oscillations,Bunch manupilations
  Study Materials: Conte, M. ?Physics of Accelerators?, Chapter 7, Pages: 111 - 132
14 General Owerview