Introduction to Particle Physics

Similar documents
Chapter 22: Cosmology - Back to the Beginning of Time

Project Paper May 13, A Selection of Dark Matter Candidates

Unsolved Problems in Theoretical Physics V. BASHIRY CYPRUS INTRNATIONAL UNIVERSITY

Chapter 22 Back to the Beginning of Time

An Introduction to Particle Physics

Announcement. Station #2 Stars. The Laws of Physics for Elementary Particles. Lecture 9 Basic Physics

Spectra of Cosmic Rays

Course Descriptions. Appendix F

Big Bang Planck Era. This theory: cosmological model of the universe that is best supported by several aspects of scientific evidence and observation

As a member of the Notre Dame community, I will not participate in, or tolerate, academic dishonesty.

FYS3510 Subatomic Physics. Exam 2016

ASTR 1120 General Astronomy: Stars & Galaxies. OUR Universe: Accelerating Universe

The God particle at last? Astronomy Ireland, Oct 8 th, 2012

Introduction to Elementary Particles

FYS 3510 Subatomic physics with applications in astrophysics. Nuclear and Particle Physics: An Introduction

Chapter 27 The Early Universe Pearson Education, Inc.

Chapter S4: Building Blocks of the Universe

Contents. Preface to the First Edition Preface to the Second Edition

2. The evolution and structure of the universe is governed by General Relativity (GR).

Syllabus: Physics 241 Introduction to Modern Physics Professor Marshall Onellion (office)

Lecture 25: Cosmology: The end of the Universe, Dark Matter, and Dark Energy. Astronomy 111 Wednesday November 29, 2017

Neutrino Astronomy. Ph 135 Scott Wilbur

Cosmic Background Radiation

Beyond Standard Models Higgsless Models. Zahra Sheikhbahaee

The Big Bang The Beginning of Time

Homework 6 Name: Due Date: June 9, 2008

Building Blocks of the Universe

One of elements driving cosmological evolution is the presence of radiation (photons) Early universe

The God particle at last? Science Week, Nov 15 th, 2012

Chapter Outline. The Ultimate Structure of Matter. The Library. Of What is the Universe Made? Reductionism. The Building Blocks of Matter

Contents. Part I The Big Bang and the Observable Universe

The Ultimate Structure of Matter

Lecture PowerPoint. Chapter 32 Physics: Principles with Applications, 6 th edition Giancoli

Gravity, Strings and Branes

A100H Exploring the Universe: Quasars, Dark Matter, Dark Energy. Martin D. Weinberg UMass Astronomy

FYS3510 Subatomic Physics. Exam 2016

The cosmological constant puzzle

Announcements. Homework. Set 8now open. due late at night Friday, Dec 10 (3AM Saturday Nov. 11) Set 7 answers on course web site.

Dark Matter and Energy

ASTR 101 General Astronomy: Stars & Galaxies

Chapter 22 Reading Quiz Clickers. The Cosmic Perspective Seventh Edition. The Birth of the Universe Pearson Education, Inc.

Review Chap. 18: Particle Physics

Dennis Silverman UC Irvine Physics and Astronomy Talk to UC Irvine OLLI May 9, 2011

1. What does this poster contain?

F. TASNÁDI LINKÖPING UNIVERSITY THEORETICAL PHYSICS NEUTRINO OSCILLATIONS & MASS

Chapter 27: The Early Universe

Quantum Physics and Beyond

Fundamental Particles

Dark Energy vs. Dark Matter: Towards a unifying scalar field?

MODERN PHYSICS Frank J. Blatt Professor of Physics, University of Vermont

From Quantum Mechanics to String Theory

Chapter 23 Lecture. The Cosmic Perspective Seventh Edition. Dark Matter, Dark Energy, and the Fate of the Universe Pearson Education, Inc.

A first trip to the world of particle physics

Quantum Physics and Beyond

Major Option C1 Astrophysics. C1 Astrophysics

ASTR 101 General Astronomy: Stars & Galaxies

The Beginning of the Universe 8/11/09. Astronomy 101

Planetarium/Observing: the clock is ticking! Don t forget to fill out your Planetarium/ Observing impression online.

Chapter 18 Reading Quiz Clickers. The Cosmic Perspective Seventh Edition. The Bizarre Stellar Graveyard Pearson Education, Inc.

Lecture 8. CPT theorem and CP violation

Gravity, Strings and Branes

Quantum Physics and Beyond

FISQ - Quantum Physics

32 IONIZING RADIATION, NUCLEAR ENERGY, AND ELEMENTARY PARTICLES

Cosmology and particle physics

ASTRONOMY 10 De Anza College

The Expanding Universe

I V E R S U N. The Hot Big Bang I T Y T H E O F E. Andrew Liddle R G. Image: NASA/WMAP Science Team

Chapter 23 The Beginning of Time. Agenda. Presentation Tips. What were conditions like in the early universe? 23.1 The Big Bang.

Chapter 23 Lecture. The Cosmic Perspective Seventh Edition. Dark Matter, Dark Energy, and the Fate of the Universe Pearson Education, Inc.

INTRODUCTION TO THE STANDARD MODEL OF PARTICLE PHYSICS

Nuclear and Particle Physics 3: Particle Physics. Lecture 1: Introduction to Particle Physics February 5th 2007

Nuclear and Particle Physics

Physics 214 Experimental Particle Physics. Lecture 1 What to expect.

Quantum Gravity and Entanglement

The best evidence so far in support of the Big Bang theory is:

Electromagnetic Waves

Quantum Decoherence due to Gravitational Time Dilation

Fundamentals of Neutrino Physics and Astrophysics

The Positron Fraction in Primary Cosmic Rays and New Cosmological Problems

VU lecture Introduction to Particle Physics. Thomas Gajdosik, FI & VU. Big Bang (model)

Title Gravitational lensing and the proton-proton reaction

Particle + Physics at ATLAS and the Large Hadron Coillder

Finish up our overview of small and large

Introduction to Atomic Physics and Quantum Optics

Stephen Blaha, Ph.D. M PubHsMtw

Today. Last homework Due next time FINAL EXAM: 8:00 AM TUE Dec. 14 Course Evaluations Open. Modern Cosmology. Big Bang Nucleosynthesis.

Lecture 24: Cosmology: The First Three Minutes. Astronomy 111 Monday November 27, 2017

Dark Matter and Dark Energy: From the Universe to the Laboratory

A100 Exploring the Universe Big Bang Theory and the Early Universe. Martin D. Weinberg UMass Astronomy

Gravity: What s the big attraction? Dan Wilkins Institute of Astronomy

Astronomy 113. Dr. Joseph E. Pesce, Ph.D. The Big Bang & Matter. Olber s Paradox. Cosmology. Olber s Paradox. Assumptions 4/20/18

Astronomy 113. Dr. Joseph E. Pesce, Ph.D Joseph E. Pesce, Ph.D.

Conceptos generales de astrofísica

Rocky Kolb Fermilab & University of Chicago. July 27, 2001 LP01 Rome

Phys 102 Lecture 28 Life, the universe, and everything

Exam #3. Final Exam. Exam 3 review. How do we measure properties of a star? A detailed outline of study topics is here:

Fundamental Particles and Forces

Option 212: UNIT 2 Elementary Particles

PHYS1118 Astronomy II

Transcription:

Introduction to Particle Physics The Particle Zoo Symmetries The Standard Model Thomas Gajdosik Vilnius Universitetas Teorinės Fizikos Katedra

Introduction to Particle Physics http://web.vu.lt/ff/t.gajdosik/wop/ Grading: 100 points = 100%, 30 attendance 2 pts each week 20 seminar presentation good preparation for bachelors thesis less pts for a really bad one examples of the last years on the next pages 30 homework download from the webpage needed for real learning 30 final exam: no makeups written and oral 50% required to pass the course.

seminar presentations in 2009 Dimensions and String Theory NMR Antimatter in medical treatments CP violation in atomic physics Antimatter Big Bang Klein Paradox Neutrino detection, solar neutrino problem WIMPs Twin Paradox Quantum Entanglement EPR Paradox The search for the Higgs boson Higgs Mechanism magnetic monopoles Vacuum Energy, Casimir effect String Theory Acceleration in Special Relativity History of the Atom Black Hole production at accelerators

seminar presentations in 2010 Annihilations Antimatter Black Hole evaporation Casimir effect Cherenkov radiation Compton scattering Dark Energy and Dark Matter Graviton detection Hawking radiation Holographic principle Klein's paradox Ladder paradox Magic numbers Many worlds interpretation of QM Modified Newtonian Dynamics Neutrino detection Neutron stars Particle detectors Quantum computers Quantum Teleportation String Theory Supernovae

seminar presentations in 2011 Compton Scattering Cosmic (Microwave) Background Radiation Detection of a neutron Detection of the neutrino Electronic orbitals Holographic universe Ladder Paradox Magic numbers Magnetic Monopoles Muon scattering Neutrino Oscillations Neutron Stars Quantum teleportation Scintillation detectors Spin of Particles Spinors Spintronics Stern-Gerlach experiment String Theory Supernovae Time Traveling Yang Mills and the mass gap

seminar presentations in 2012 Antimatter Bose-Einstein condensation Cold Fusion Compton Scattering Dark Matter Extra Dimensions Gamma Ray Bursts Gravitational Lensing Light Polarization Many Worlds Interpretation of QM Nanotechnology Neutrinos Neutrinos for transmitting information Nuclear Fusion Proton Therapy Quantum Computers Quantum Entanglement Quantum Teleportation Quantum tunneling Quasi particles Spectroscopy in Astronomy Superdense Coding Supernovae Tachyons The Creation of Matter Vacuum

seminar presentations in 2013 Antimatter Cherenkov Radiation Color Confinement Compton Scattering Dark Matter Higgs Mechanism Lasers Neutron Stars Parallel universes Strange matter Supernovae Synchrotron Radiation Time Traveling Vacuum Energy Neutrino Oscillations

seminar presentations in 2014 Black Hole Information Paradox Cancer treatment with Nanoparticles Cooling Technology (Doppler Cooling) Dark Energy Fates (ends) of the Universe Fermi Paradox Kinematics in Special Relativity Search for gravitational waves

seminar presentations in 2015 Cherenkov Radiation Chiral molecular entities Compton Scattering Constant linear acceleration in Relativity Cosmic Particles Hawking Radiation Micro Black Holes Microwave Background Radiation Nanotechnology Quantum Teleportation Redshift Supersymmetry and the search for it Tachyons Time Travel Universe creation theories Vacuum Energy

seminar presentations in 2016 Black Holes Dark Matter Fusion catalysed by muons Gravitational Lensing Interpretations of Quantum Mechanics String Theory Supernovae The Eightfold Way The Electron The electroweak interaction The Proton