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Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color...

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Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya Tanizaki [1811.10608]
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Page 1: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Yuji Hirono

Topological order and color superconductivity

Asia Pacific Center for Theoretical Physics

In collaboration with Yuya Tanizaki [1811.10608]

Page 2: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Phases of QCD matterT

baryon chemical potential

Neutron stars

Early universe Heavy ion collisions Quark-gluon plasma

Color superconductivity

Hadrons

Page 3: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

“Quark-hadron continuity”

!3

ud s

Nucleon superfluidity

Color superconductor?

“CFL phase”

[Schafer, Wilczek '99]

“Topological order”

Page 4: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Outline• Color SC & quark-hadron continuity • Vortices in CFL phase • Low-energy effective gauge theory • BF theory + massless phonons

!4

Page 5: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Color superconductivity

!5

• Order parameter: diquark condensate

• Symmetry transformation

• Three light quarks with degenerate mass • up, down, strange

color flavor

Page 6: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Color-flavor locked phase

!6

• Ground state

ud s

• All the gluons are gapped: color SC

• SSB of global U(1): superfluidity

Page 7: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

“Quark-hadron continuity”

!7

• Global symmetry

U(1) phonons Pions

• Light modes - Nambu-Goldstone bosons

The same in nucleon superfluid & CFL

[Schafer, Wilczek '99]

Page 8: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

“Quark-hadron continuity”

!8

Pions

Vector mesons

CFL pions

Gluons

Baryons Quarks

U(1) phonons U(1) phonons

[Yamamoto, Tachibana, Hatsuda, Baym '07][Fukushima, Hatsuda '10]

……

Page 9: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Topological order

!9

• Order that cannot be captured by local order parameters • Robust degeneracy of ground states • Ex) s-wave SC / FQHE

• Phase transition is needed btw. states with different topological order

• Order parameter: Wilson loop, etc • “Higher-form symmetry”

and its spontaneous breaking[Gaiotto, Kapustin, Seiberg, Willett ’15]

[X. G. Wen ’90]

Page 10: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Vortices in CFL

!10

• Quantized (1/3) superfluid circulation• Color magnetic flux

[http://cua.mit.edu/ketterle_group/Nice_pics.htm]

• Rotating neutron star

[Arata Yamamoto’s talk tomorrow][Balachandran, Digal, Matsuura '06]

Page 11: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Fractional statistics of vortices & particles[Cherman, Sen, Yaffe 1808.04827]

!11

Z3 braiding phases

=color Wilson loop

Page 12: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

ud s

Nucleon superfluidity

Color superconductor

[Cherman, Sen, Yaffe 1808.04827]

!12

Z3 braiding phases

“CFL phase”

Fractional statistics of vortices & particles

Page 13: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Low-effective theory for CFL

!13

• We consider degenerate masses for u, d, s • Massless degrees of freedom:

U(1) phonons

• Correlation of U(1) circulation & color holonomy

• Fractional statistics

Page 14: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Dual effective gauge theory - SC

!14

Page 15: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

BF theory for superconductivity

!15

• Abelian Higgs model

• EOM for :

Page 16: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

BF theory for superconductivity

!16

• Physical observables

Wilson loop operator Vortex operator

: world line of a quasiparticle : world-sheet of a vortex

Page 17: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

BF theory for superconductivity

!17

Fractional statistics of quasiparticles & vortices

=

Page 18: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

• Emergent Z_k 1-form & 2-form symmetry

BF theory for superconductivity

!18

Page 19: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

BF theory for superconductivity

!19

• Emergent Z_k 1-form & 2-form symmetry

Charged objects

Page 20: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

BF theory for superconductivity

!20

• 1-form & 2-form symmetries are spontaneously broken

“Topological order”

Page 21: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

BF theory for superconductivity

!21

Z_k Fractional Braiding phase

1-form symmetry

2-form symmetry

SSB

SSB

Topological

Order

Page 22: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Dual effective gauge theory - CFL

!22

[Hirono, Tanizaki 1811.10608]

Page 23: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

GL model for CFL

!23

• GL Lagrangian

• Drop amplitude fluctuations kinetic termof the gauge field

• Fix the gauge so that

• Go to dual:

Page 24: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Dual theory for CFL

!24

• Topological BF theory coupled with massless superfluid phonons

• K matrix • not square • dim coker K = (# of massless phonons)

Phonons BF term

Page 25: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Dual theory for CFL

!25

• Physical observables

Phonons

Page 26: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Dual theory for CFL

!26

is the Moore-Penrose inverse of

Massless phonons

Page 27: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Dual theory for CFL

!27Z3 fractional statistics

Physical charge vectors

Page 28: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Dual theory for CFL

!28

Discrete (Z3) 2-form symmetry

No discrete 1-form symmetry

Page 29: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

2-form symmetry is unbroken

!29

No topological degeneracy of the ground states

• Z3 2-form symmetry 2-form symmetry

• Continuous 2-form symmetry cannot be brokenin 4D (Coleman-Mermin-Wagner theorem)

• Vortices are log-confined because of massless phonons

• p-form symmetry cannot be broken if d - p ≦ 2

Page 30: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

Summary

!30

Z3 Fractional Braiding phase

1-form symmetry

2-form symmetry SSB

massless phonons

Page 31: Topological order and color superconductivity€¦ · Yuji Hirono Topological order and color superconductivity Asia Pacific Center for Theoretical Physics In collaboration with Yuya

ud s

Nucleon superfluidity

Color superconductor

!31

“CFL phase”

Summary


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