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Introduction to Particle Accelerators (NPAP MOOC) · LearnSpace
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Introduction to Particle Accelerators (NPAP MOOC)

Курс от Lund University
Средний≈ 11.6 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

Welcome to the Nordic Particle Accelerator Program's (NPAP) Massive Open Online Courses and to the fascinating world of particle accelerators! Did you know that in the year of 2000 there were more than 15 000 particle accelerators in the world? Yet, today it has grown to more than 30 000 of them! A third of the particle accelerators are dedicated to medical applications, such as radio therapy, and a half are used for ion implantation in semiconductor devices. Also numerous particle accelerators are used for sterilizing food. Despite these everyday life examples of small particle accelerators, it is the large accelerators, like the Large Hadron Collider at CERN, that most people associate with particle accelerators. There will be many new applications for particle accelerators in the future and by that there is a need for MOOCs that describe the techniques and applications of these machines.. The NPAP series of MOOCs consists of three MOOCs designed to disseminate knowledge about particle accelerator technology to impacted fields. The courses have been made possible thanks to the support of the Erasmus Plus, Strategic Partnership funding of the European Commission and thanks to the dedicated lecturers from the universities of Lund, Uppsala, Arhus, Oslo and Jyväskylä, and by experts from the MAX IV Laboratory and European Spallation Source (ESS), both in Lund, Sweden. In many of the lectures we detail the MAX IV Laboratory and ESS - currently hosting the most powerful synchrotron light source and neutron source in the world. In the MAX IV Laboratory intense X-ray beams are produced by electrons that are first accelerated to almost the speed of light, and at ESS protons will be accelerated and, by a process called spallation, generate intense beams of neutron. The X-ray and neutron beams are used for looking into matter, down to the atomic level. The MAX IV Laboratory and ESS form a unique European center of excellence for thousands of scientists that together build the world of tomorrow. We also take a closer look at the Large Hadron Collider, at CERN, in Geneva. This powerful machine has already had an immense impact on theoretical physics and will continue to contribute to our knowledge of nature for quite some time. The first course in our NPAP series is the Introduction to Particle Accelerators. It explains how a particle accelerator can generate light of wavelengths down to one Angstrom. It also explains how the ESS facility can create a massive flux of neutrons by accelerating protons and let them smash into a disk of tungsten. The initial modules provide the basic knowledge about linear and circular accelerators that is required to understand other types of accelerators, like the Large Hadron Collider (LHC), at CERN in Geneva. We describe LHC and give an introduction to the elementary particle physics it is used for. We continue by describing some new concepts for future particle accelerators, like plasma driven accelerators. The second MOOC in the series is called "Fundamentals of Particle Accelerator Technology (NPAP MOOC)" and offers four modules: The Radio Frequency (RF) System of Accelerators; Magnet technology for accelerator; Beam Diagnostics; Basics of Vacuum techniques. The third MOOC is - Medical Applications of Particle Accelerators, which offers the four modules: Introduction to the course and radiotherapy; Linear electron accelerators for radiotherapy; Proton therapy part I; Proton therapy part II and the production of medical radionuclides. The three MOOCs can be taken either separately or as a package. For students that intend to take all three courses we recommend that they are taken in order. Get started and join us on this journey through the world of particle accelerators and be amazed by their importance for our lives and societies! Best Regards, The NPAP Team!

Навыки, которые вы освоите

electromagneticsPhysicsMaterials scienceMedical EquipmentEmerging TechnologiesLaboratory ResearchSemiconductorsGeneral Science and ResearchRadiation Therapy

Программа курса

6 модулей · 68 учебных материалов

01Accelerators for Synchrotron Light 14 материалов

Start and welcome

Start and welcome!Чтение

Light and light sources

Where does light come from?ВидеоTry an experiment - lightЧтениеWhich type of light do we need?Видео

Учитесь у экспертов

Sverker Werin

Professor, Accelerator physics, MAX IV

Francesca Curbis

Ph.d, Senior lecturer, Accelerator physics, Max IV

Mats Lindroos

Adjunct professor in Particle Physics & Head of Accelerator Division at ESS

Erik Adli

Associate Professor, High Energy Physics, University of Oslo (UiO)

Introduction to Particle Accelerators (NPAP MOOC)
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≈ 11.6 ч

6 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
Try another experiment - detectorЧтение
Light and light sourcesЗадание

Accelerators to make light

Introduction to synchrotron acceleratorsВидеоHow does an accelerator for synchrotron radiation work?ВидеоTry thinking with your hand - motion in a magnetЧтениеHow magnets affect particlesЧтениеAccelerators to make lightЗадание

The development of accelerators for synchrotron light

The evolution of accelerators for synchrotron lightВидеоThe development of accelerators for synchrotron lightЗадание

Graded quiz for Accelerators for synchrotron light

Accelerators for synchrotron light: Graded testЗадание
02Photon light sources and MAX IV15 материалов

Introduction to the second module

Welcome to the second moduleЧтение

Synchrotron radiation

Electromagnetic spectrumВидеоDiscovery of synchrotron radiationВидеоGeneral characteristics of synchrotron radiationВидеоPhoton Light SourcesЗадание

Bending magnets, wigglers and undulators

Bending magnets radiationВидеоCritical wavelengthЗаданиеWigglers and undulatorsВидеоBending magnets, wigglers and undulatorsЗадание

Free Electron lasers

Free Electron LasersВидеоConfigurations. SASE and seedingВидеоFree Electron lasersЗаданиеUseful links about FELsЧтение

Further reading about synchrotron radiation and FELs

Links to further readingЧтение

Graded test for Photon light sources and MAX IV

Photon light sources:Graded testЗадание
03Spallation sources and ESS17 материалов

Introduction and neutron science

Basics of neutron scattering scienceВидеоThe discovery of the neutronЧтениеNeutron spallation sourcesВидеоNeutron sources - Extra readingЧтениеIntroduction and Neutron scienceЗаданиеNeutron E-Learning platformsЧтение

European Spallation Source (ESS)

Introductory readingЧтениеThe basics of ESSВидеоESS - Complementary informationЧтениеChallenges for the ESS acceleratorВидеоThe ESS AcceleratorВидеоThe ESS accelerator - extra readingЧтениеHow to observe the ESS beamВидеоMore about ESS Beam DiagnosticsЧтениеTo avoid melting the targetВидеоESSЗадание

Graded Quiz for Neutron Sources

Neutron science and ESS: Graded testЗадание
04Particle Colliders20 материалов

Introduction to Particle Colliders

Introduction to Particle CollidersЧтениеIntroduction to Particle CollidersВидеоGoing into matter, the standard modelВидеоThe Standard Model - further readingЧтениеLinks particles and particle acceleratorsЧтениеParticle collider characteristicsВидеоMore linksЧтениеIntroduction to Particle CollidersЗадание

The LHC and its experiments

Introduction to CERNВидеоLHC main parameters and technological choicesВидеоExisting CERN moviesЧтениеThe LHC and its experimentsЗадание

Linear Colliders

Linear CollidersВидеоILC and CLICВидеоLinear CollidersЗадание

Future Circular Colliders

Future Circular CollidersВидеоConclusionsВидеоLearning outcomesЧтениеFuture Circular CollidersЗадание

Graded Quiz for Particle Colliders

Particle colliders: Graded testЗадание
05Stay tuned for upcoming resources 1 материалов

Stay tuned for more accelerator science!

Want to learn more about accelerating sciences and pushing their frontiers ?Чтение
06 Well done! You have now successfully finalized the course!1 материалов

Thank you for your participation

Well done and thank you for your participation!Чтение