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Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

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Page 1: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Towards a New Standard ModelTowards a New Standard Model

IUPAPWorking Group 9

JULY 2, 2010

Stuart FreedmanUniversity of California at Berkeley

andLawrence Berkeley National Laboratory

Page 2: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Yukawa Nambu Glashow-Salam-Weinberg

Quantum Field Theory -- Spontaneous Symmetry Breaking

Page 3: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Standard Model Lagrangian

Simple!

L =

Page 4: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Standard Model

Page 5: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

PDG 2000 + SNO + SK

(3) < 1< 2 < (3)

Constituent Masses

Page 6: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory
Page 7: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

ATLAS at LHC

CMS at LHC

Enormous Detectors are Poised to Discover the Higgs Boson

D0 at FNAL

Page 8: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

The Key is Broken Symmetries

Page 9: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

d '

s'

b '

⎜ ⎜ ⎜

⎟ ⎟ ⎟=

Vud Vus Vub

Vcd Vcs Vcb

Vtd Vts Vtb

⎜ ⎜ ⎜

⎟ ⎟ ⎟

d

s

b

⎜ ⎜ ⎜

⎟ ⎟ ⎟

MC

K

CKM Phenomenology

uL

′ d L

⎝ ⎜

⎠ ⎟

cL

′ s L

⎝ ⎜

⎠ ⎟

tL

′ b L

⎝ ⎜

⎠ ⎟

| ′ d L >= Vud | dL > +Vus | sL > +Vub | bL >

Quarks

Vud Vus Vub

Vcd Vcs Vcb

Vtd Vts Vtb

⎜ ⎜ ⎜

⎟ ⎟ ⎟=

c12c13 s12c13 s13e−iδ

−s12c23 − c12s23s13eiδ c12c23 − s12s23s13e

iδ s23c13

s12s23 − c12c23s13eiδ −c12s23 − s12c23s13e

iδ c23c13

⎜ ⎜ ⎜

⎟ ⎟ ⎟

Page 10: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

eL

ν e L

⎝ ⎜

⎠ ⎟

μL

ν μ L

⎝ ⎜

⎠ ⎟

τ L

ν τ L

⎝ ⎜

⎠ ⎟

|ν e L >= Ue1 |ν1L > +Ue 2 |ν 2L > +Ue 3 |ν 3L >

Leptons

U =

Ue1 Ue2 Ue 3

Uμ1 Uμ 2 U μ 3

Uτ 1 Uτ 2 Uτ 3

⎜ ⎜ ⎜

⎟ ⎟ ⎟

=

1 0 0

0 cosθ23 sinθ23

0 −sinθ23 cosθ23

⎜ ⎜ ⎜

⎟ ⎟ ⎟×

cosθ13 0 e−iδ CP sinθ13

0 1 0

−e iδ CP sinθ13 0 cosθ13

⎜ ⎜ ⎜

⎟ ⎟ ⎟×

cosθ12 sinθ12 0

−sinθ12 cosθ12 0

0 0 1

⎜ ⎜ ⎜

⎟ ⎟ ⎟×

1 0 0

0 e iα / 2 0

0 0 e iα / 2+iβ

⎜ ⎜ ⎜

⎟ ⎟ ⎟

Maki-Nakagawa-Sakata Matrix

Page 11: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Neutrino SectorNeutrino Sector

U =

Ue1 Ue2 Ue 3

Uμ1 Uμ 2 U μ 3

Uτ 1 Uτ 2 Uτ 3

⎜ ⎜ ⎜

⎟ ⎟ ⎟

=

1 0 0

0 cosθ 23 sinθ 23

0 −sinθ 23 cosθ 23

⎜ ⎜ ⎜

⎟ ⎟ ⎟×

cosθ13 0 e−iδ CP sinθ13

0 1 0

−e iδ CP sinθ13 0 cosθ13

⎜ ⎜ ⎜

⎟ ⎟ ⎟×

cosθ12 sinθ12 0

−sinθ12 cosθ12 0

0 0 1

⎜ ⎜ ⎜

⎟ ⎟ ⎟×

1 0 0

0 e iα / 2 0

0 0 e iα / 2+iβ

⎜ ⎜ ⎜

⎟ ⎟ ⎟

θ12 = (33.9−2.2+2.4 )°

θ23 = (45 ± 7)°

θ13 <13°

α =?

β = ?

δ =?

or ?

Normal or Inverted? Majorana or Dirac?

Page 12: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

12

Double Beta Decay

2 0

Page 13: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

13

Strategy for 0νββ

Energy distribution in 2νββ and 0νββ

= G(Q,Z) |Mnucl|2 <m2

mν = Uei

2

i =1

3

∑ miε i

Page 14: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Schönert

Current Picture of Double Beta Decay

Page 15: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Muon g-2

10Expt. 11659208.0 6.3 10 0.54 ppmaμ

Momentum

Spin

e

Page 16: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

a

Measure a know B and understand many small effects

Page 17: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

some 10th order examples:Some 10th order diagrams€

aμ =(g − 2)

2

Page 18: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Muon g-2

Theory: 0.48 ppm Experiment: 0.54 ppm

aμ(expt-thy) = (295±88) x 10-11 (3.4

Page 19: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

μμe Conversion e Conversion

19

A. de Gouvea

??

?

Sindrum II

MEGA

MEG proposal

( , ) ( , )A Z e A Zμ

Page 20: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Nuclear Beta Decay and physics beyond the Standard Model

Muon Beta Decay

LRTVS

mneF eg

GM

,,,,

||)()(||2

4

μ

μμ

μ μ

)1(3)34(3

2)33(

)(cos0

2

2

xx

xxx

dxdx

d

θ

)34(

3

2)1(cos xxP δθμ

max,e

e

E

Ex

Page 21: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

TWIST Experiment at Triumf

TWIST 2010

2.9 σ above 1.0

Page 22: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

0+ to 0+ Nuclear Beta Decay

Page 23: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Gv=G|Vud|2

Hardy

Page 24: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Ion Traps Worldwide

Page 25: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Vud2+ Vus

2+ Vub2= 1

Test of Unitarity

Page 26: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Neutron Beta Decay

dΓ = dΓn 1+ bme

Ee

+ ar p e •

r p ν

Ee Eν

+ Aˆ σ n •

r p e

Ee

+ Bˆ σ n •

r p ν

+ Dˆ σ n •

r p e ×

r p ν

Ee Eν

⎣ ⎢

⎦ ⎥

Page 27: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

1985 1990 1995 2000 2005820

840

860

880

900

920

940

.

neut

ron

lifet

ime

(τ),

s

year

878.50.8

World average

885.70.8

Neutron Beta Decay

Page 28: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory
Page 29: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

UCNA at LANLNeutrons in North America:NISTLANL UCNSNS Triumf (plans)

Page 30: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Beta decay correlations in laser trapped atoms2 μA 25 MeV Proton beam88” Cyclotron

heatedMgO target

Atomic Beam

Slowing magnet

Ion Detector

MCPfor Shake-Off Detection

Trapping Laser Beams

24Mg(p,a)21Na

0.8mm

~300,000 21Na in a MOT

Page 31: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Neutral Atom TrappingTriumf-ISACBerkeleyArgonne Limits on tensor and scalar couplings

Page 32: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Electric Dipole Moment

Page 33: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Harvard/Sussex/ILL

Page 34: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

|dn|< 3 x 10-26 ecm

Page 35: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

SNS EDM experiment

Page 36: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Compiled by Ramsey-Musolf

Page 37: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Cold atom EDM

Radium isotopes

Capture and cool in a MOT

Load to a polarized dipole force trap

Pump to proper magnetic sublevel

Launch in a cold beam through

B and E interogation chamber

Detect spin rotation

ANL

http://www-mep.phy.anl.gov/atta/research/radiumedm.html

Page 38: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Ramsey Musolf

Page 39: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

Present and Future Measurements of sin2θW

Page 40: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory

LANL Los AlamosLBNL BerkeleyBNL BrookhavenANL ArgonneSNOLABSUSL/DUSELNSCL Michigan StateTexas A&MandOther University Labs

JLABTriumf

FermiLab

North America

Page 41: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory
Page 42: Towards a New Standard Model IUPAP Working Group 9 JULY 2, 2010 Stuart Freedman University of California at Berkeley and Lawrence Berkeley National Laboratory