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Physics for Everyone Lecture Series Fermi National Accelerator Laboratory May 4, 2011 Chris Polly, Fermilab …  Chris Polly – May 4, 20111The Magic of.

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Presentation on theme: "Physics for Everyone Lecture Series Fermi National Accelerator Laboratory May 4, 2011 Chris Polly, Fermilab …  Chris Polly – May 4, 20111The Magic of."— Presentation transcript:

1 Physics for Everyone Lecture Series Fermi National Accelerator Laboratory May 4, 2011 Chris Polly, Fermilab …  Chris Polly – May 4, 20111The Magic of Muons

2 Chris Polly – May 4, 2011The Magic of Muons2 What are muons? What are they good for? Why are they important to Fermilab? 

3 Chris Polly – May 4, 2011The Magic of Muons3 Everything we see, hear, or touch arises from a very basic set of ingredients… p n e 

4

5 Chris Polly – May 4, 2011The Magic of Muons5 And spectacular complexity…

6 Chris Polly – May 4, 2011The Magic of Muons6 And some not so spectacular effects…

7 Chris Polly – May 4, 2011The Magic of Muons7 With so much of the world described by atoms & optics, some scholars at the end of the 20 th century were jaded p n e  “In this field, almost everything is already discovered, and all that remains is to fill a few unimportant holes.” (1878) Johann Philipp Gustav von Jolly advising Max Planck not to pursue physics 1918

8 Chris Polly – May 4, 2011The Magic of Muons8 p n e  electron After these…muons were the next discovered in 1936

9 Chris Polly – May 4, 2011The Magic of Muons9 p n e  electron ? ? After these…muons were the next discovered in 1936

10 Chris Polly – May 4, 2011The Magic of Muons10 p n e  Physics for Everyone Lecture Series David Schmitz, Fermilab April 6, 2011

11 Chris Polly – May 4, 2011The Magic of Muons11

12 Chris Polly – May 4, 2011The Magic of Muons12

13 Chris Polly – May 4, 2011The Magic of Muons13 1936

14 Chris Polly – May 4, 2011The Magic of Muons14 1936

15 Chris Polly – May 4, 2011The Magic of Muons15

16 Chris Polly – May 4, 2011The Magic of Muons16 Simulation of cosmic ray event in Auger

17 Chris Polly – May 4, 2011The Magic of Muons17 Simulation of cosmic ray event in Auger

18 Chris Polly – May 4, 2011The Magic of Muons18 What are muons?  I. I. Rabi 1944

19 Chris Polly – May 4, 2011The Magic of Muons19 p n e   1949

20 Chris Polly – May 4, 2011The Magic of Muons20 p n 

21 Chris Polly – May 4, 2011The Magic of Muons21 p n e   

22 Chris Polly – May 4, 2011The Magic of Muons22 p n e    Protons made of stuff

23 Chris Polly – May 4, 2011The Magic of Muons23 p n e   

24 Chris Polly – May 4, 2011The Magic of Muons24 p n e   

25 Chris Polly – May 4, 2011The Magic of Muons25 p n e   

26 Chris Polly – May 4, 2011The Magic of Muons26 p In fact, they were so similar, scientists wondered if muons were electrons in some excited state e-e-  e  Level at which muons convert to electrons Year

27 Chris Polly – May 4, 2011The Magic of Muons27 p n e   Where do muons come from? 

28 Chris Polly – May 4, 2011The Magic of Muons28 p n e    p  

29 Chris Polly – May 4, 2011The Magic of Muons29 p n e   

30 e Chris Polly – May 4, 2011The Magic of Muons30 p n e    

31 Chris Polly – May 4, 2011The Magic of Muons31 What are they good for? 

32 Chris Polly – May 4, 2011The Magic of Muons32 e 

33 Chris Polly – May 4, 2011The Magic of Muons33

34 Chris Polly – May 4, 2011The Magic of Muons34 Where are the facilities that do this?

35 Chris Polly – May 4, 2011The Magic of Muons35 What are they good for? 

36 Chris Polly – May 4, 2011The Magic of Muons36 Muon radiography

37 Chris Polly – May 4, 2011The Magic of Muons37 Muon radiography…why use muons?

38 Chris Polly – May 4, 2011The Magic of Muons38 Muon radiography 1968

39 Chris Polly – May 4, 2011The Magic of Muons39 Muon radiography…for security

40 Chris Polly – May 4, 2011The Magic of Muons40 Muon radiography…for security

41 Chris Polly – May 4, 2011The Magic of Muons41 What are they good for? 

42 Chris Polly – May 4, 2011The Magic of Muons42 Why are muons important to Fermilab? 

43 Chris Polly – May 4, 2011The Magic of Muons43 Fermilab’s plan for accelerator- based research at the lab   e e

44 Chris Polly – May 4, 2011The Magic of Muons44 Fermilab’s plan for accelerator- based research at the lab

45 Chris Polly – May 4, 2011The Magic of Muons45 Fermilab’s plan for accelerator- based research at the lab

46 Chris Polly – May 4, 2011The Magic of Muons46 Principles of Muon g-2

47 Chris Polly – May 4, 2011The Magic of Muons47 Principles of Muon g-2 Even in a perfect vacuum, pairs of particles are continually popping in and out of existence e+e+ e-e- e-e- e+e+ e+e+ e-e-

48 Chris Polly – May 4, 2011The Magic of Muons48 What’s that got to do with muons? e+e+ e-e- e-e- e+e+ e+e+ e-e-

49 Chris Polly – May 4, 2011The Magic of Muons49 What’s that got to do with muons? e+e+ e-e- e-e- e+e+ e+e+ e-e-

50 Chris Polly – May 4, 2011The Magic of Muons50 What’s that got to do with muons?

51 Chris Polly – May 4, 2011The Magic of Muons51 Why do we call it g-2?

52 Chris Polly – May 4, 2011The Magic of Muons52 Muon g-2 measured very precisely at Brookhaven National Lab (2001) Would like to bring the apparatus from Brookhaven to Fermilab to improve the precision

53 Chris Polly – May 4, 2011The Magic of Muons53 Mu2e at Fermilab Mu2e sensitivity Level at which muons convert to electrons Year

54 Chris Polly – May 4, 2011The Magic of Muons54 Muon to electron conversion ¼ 20 fm ¼ 4 fm 1S Muonic Aluminum Coherent Conversion ( μ→ e) X e-e- Nucleus Is Left Unchanged Muon Converts

55 Chris Polly – May 4, 2011The Magic of Muons55 Mu2e solenoids…technical marvels

56 Chris Polly – May 4, 2011The Magic of Muons56 Mu2e solenoids…technical marvels p p Magnetic Mirror Effect μ μ π π π decays to μ μ is captured into the transport solenoid and proceeds to the stopping targets 2.5T 5T Gradient Solenoid Field Primary π production off gold target π π ¹ ¹

57 Chris Polly – May 4, 2011The Magic of Muons57 The biggest muon project ever… The Muon Collider

58 Chris Polly – May 4, 2011The Magic of Muons58 Muon/electron collisions are cleaner

59 Chris Polly – May 4, 2011The Magic of Muons59


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