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Fundamentals of particle accelerator technology (NPAP MOOC) · LearnSpace
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Fundamentals of particle accelerator technology (NPAP MOOC)

Курс от Lund University
Средний≈ 26.2 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

Did you know that particle accelerators play an important role in many functions of todays society and that there are over 30 000 accelerators in operation worldwide? A few examples are accelerators for radiotherapy which are the largest application of accelerators, altogether with more than 11000 accelerators worldwide. These accelerators range from very compact electron linear accelerators with a length of only about 1 m to large carbon ion synchrotrons with a circumference of more than 50 m and a huge rotating carbon ion gantry with a weight of 600 tons! There are also a growing number of synchrotron light sources in the world. The light in these sources are created by electrons that are accelerated to almost the speed of light. This light can reveal the molecular structures of materials and also take x-ray pictures of the inner structure of objects. Synchrotron light sources are very important in life sciences, material sciences and chemistry. Another type of accelerators are used in spallation sources, like the European Spallation Source in Lund, Sweden. Here protons are accelerated to very large energies. They produce neutrons when they are smashed into a disc of tungsten. These neutrons are used for finding the inner structure of objects and atomic structures of materials. Finally there are many accelerators for basic physics, like the large hadron collider in Cern. This course takes you on a journey through the technologies used in particle accelerators: The microwave system which produce the electromagnetic waves that accelerate particles; The magnet technology for the magnets that guide and focus the beam of particles; The monitoring systems that determine the quality of the beam of particles; Finally the vacuum systems that create ultra high vacuum so that the accelerated particles do not collide with molecules and atoms. Exciting right! The course is graded through quizzes, one for each of the four modules. Throughout the course there are also a number of training quizzes to offer you support. The four modules in the course are: RF-systems, Magnet technology, Beam diagnostics, and Vacuum techniques. In total there are 48 lectures, where each lecture is a 2-4 minutes long video presentation. Some of the lectures are followed by short texts with complementary information and all will hopefully be an exciting collection for you to engage with. Have fun!

Навыки, которые вы освоите

electromagneticsMaterials scienceEngineering, Scientific, and Technical InstrumentsHigh VoltagePump StationsSustainable EngineeringPhysicsElectronic SystemsPower ElectronicsRadiologyRadiation TherapyEquipment DesignSustainable TechnologiesElectrical EngineeringMedical Equipment and Technology

Программа курса

5 модулей · 115 учебных материалов

01RF-systems39 материалов

Introduction to RF-systems

IntroductionЧтениеGeneral introductionВидеоBasic concepts 1ЧтениеQuiz IntroductionЗадание

Учитесь у экспертов

Anders Karlsson

Professor Electromagnetic Theory

Pauli Heikkinen

PhD, Chief engineer for the Accelerator Laboratory at the University of Jyväskylää in Finland

Franz Bødker

R&D Engineer, Ph.D.

Maja Olvegård

Post Doc in Beam Diagnostics

Fundamentals of particle accelerator technology  (NPAP MOOC)
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Обучение на Coursera

≈ 26.2 ч

5 модулей

Язык: Английский

Субтитры: Арабский, Французский, Украинский, Китайский (Китай), Греческий, Итальянский, Бразильский португальский, Нидерландский, Корейский, Немецкий, Русский, Тайский, Индонезийский, Шведский, Турецкий, Испанский, Хинди, Японский, Казахский, Польский

Часть программы вашего университета
Outline of the RF-systemВидео
Outline of RF-systemЗадание

RF-cavities

Pill-box cavitiesВидеоA mathematical description of the pillbox cavityЧтениеPill-box cavitiesЗаданиеEnergyВидеоA mathematical description of energy in cavitiesЧтениеEnergyЗадание

Waveguides

Coaxial waveguidesВидеоA mathematical description of the coaxial waveguideЧтениеCoaxial waveguidesЗаданиеRectangular waveguidesВидеоA mathematical description of rectangular waveguidesЧтениеRectangular waveguidesЗаданиеComputer simulationsВидеоComputer simulationsЗаданиеThe circulatorВидеоMore on the circulatorЧтениеCirculatorЗадание

RF-Amplifiers

Introduction to RF-amplifiersВидеоGain of amplifiersЧтениеIntroduction to amplifiersЗаданиеThe klystronВидеоThe klystronЗадание

More about cavities

General propertiesВидеоGeneral propertiesЗаданиеDrift tube linac (DTL)ВидеоDrift tube Linac: exampleЧтениеDrift tube linacЗаданиеElliptical cavityВидеоElliptical cavity: exampleЧтениеElliptical cavitiesЗаданиеTraveling wave cavityВидеоTraveling wave cavityЗаданиеRF-systems: Graded testЗадание
02Magnet technology for accelerators10 материалов

Magnets part 1

Basic iron magnet concepts, magnet types and designВидеоMagnetic circuitsЧтениеBasic conceptsЗаданиеFast ramp magnetsВидеоFast ramped magnetsЗадание

Magnets part 2

Superconducting magnetsВидеоSuperconducting magnetsЗадание

Magnets part 3

Permanent accelerator magnets and insertion devicesВидеоPermanent magnets and insertion devicesЗаданиеMagnet technology: Graded testЗадание
03Beam Diagnostics42 материалов

An overview

Motivation to beam diagnosticsВидеоMotivation to beam diagnosticsЗаданиеImportant concepts in beam diagnosticsВидеоImportant concepts in beam diagnosticsЗаданиеDescribing the beamВидеоDescribing the beamЗадание

Beam intensity and position

Introduction to lecture on current and position measurementsЧтениеFaraday cupВидеоFaraday cupЗаданиеWall current monitorВидеоWall current monitorЗаданиеBeam Current TransformerВидеоBeam current transformerЗаданиеButton pick-upВидеоButton pick upЗаданиеCavity BPMВидеоCavity BPMЗадание

Transverse Beam Profile

Introduction to lecture on transverse beam profile measurementsЧтениеOTR and Scintillating screensВидеоOTR and scintillation screensЗаданиеWire scanner and SEM gridВидеоWire scanner and SEM gridЗаданиеSynchrotron radiation monitorВидео

Longitudinal beam profile

An introduction to longitudinal profileВидеоTransversely deflecting cavityВидеоTransversely deflecting cavityЗаданиеStreak cameraВидеоStreak cameraЗаданиеEnergy (profile) monitoring: Spectrometer and ToFВидео

Beam Loss Monitoring

Introduction to beam loss and machine protection.ВидеоIntroduction to beam loss and machine protectionЗаданиеIonization chamberВидеоIonization chamberЗаданиеScintillation counterВидеоScintillation counterЗадание
04Basics of Vacuum techniques23 материалов

An overview and motivation

MotivationВидеоMotivationЗаданиеIntroduction to pressure/vacuumВидеоIntroduction to pressure/vacuumЗадание

Residual gases and vacuum regions

Three states of residual gasВидеоThree states of residual gasesЗаданиеDefinition of vacuum regionsВидеоDefinition of vacuum regionsЗаданиеComposition of residual gasВидеоComposition of residual gasesЗаданиеBrief introduction to Maxwell-Boltzmann theory for ideal gasЧтение

Vacuum equipment

Introduction to pumpsВидеоGas-Displacement PumpsВидеоGas displacement pumpsЗаданиеKinetic Vacuum PumpsВидеоKinetic vacuum pumpsЗаданиеGas-Binding PumpsВидеоGas binding pump

Other vacuum components

Vacuum GaugesВидеоVacuum GaugesЗаданиеVacuum componentsВидеоVacuum componentsЗаданиеVacuum technology: Graded testЗадание
05You have now successfully finalized the course!1 материалов

Well done! You have now successfully finalized the course!

Well done! You have now successfully finalized the course!Чтение
Synchrotron radiation measurementЗадание
To measure the beam emittance and the Twiss parameters:Чтение
Emittance measurementsЗадание
Energy monitoring: Spectrometer and ToFЗадание
Energy along a single bunchВидео
Energy along a single bunchЗадание
Beam diagnostics: Graded testЗадание
Задание