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Spin Correlated States in Optical Lattices Fei Zhou (ITP, Utrecht) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard), F. D. Haldane (Princeton), P. W. Wiegmann (Chicago) G. Barkema, M. Snoek, J. Wiemer (Utrecht) Funded by the FOM, the Netherlands
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Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Dec 19, 2015

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Page 1: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Spin Correlated States in Optical Lattices

Fei Zhou (ITP, Utrecht) April 15, 2003

PIMS, Banff National Park, Canada

Acknowledgement:

E.Demler (Harvard), F. D. Haldane (Princeton), P. W. Wiegmann (Chicago) G. Barkema, M. Snoek, J. Wiemer (Utrecht)

Funded by the FOM, the Netherlands

Page 2: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Optical lattices

Page 3: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Information processor and Information storage

100…Ghz, 200…GbDVD/CD dr.$$$$(?)

Page 4: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

A lab for baby universe ?

n(2))

Creation of vortices, monopoles and half vortices.

(1), n(1))

2

21

ZSS

R

Page 5: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Atoms in optical lattices Vs. electrons in Cuprates

a) Free from imperfections

b) Known interactions

c) Tunable coupling constants

d) ld, 2d and 3d lattices

e) S=0, 1/2, 1, 3/2 atoms

a) Defects or disorder

b) Material dependent

c) Barely changeable

d) layered structures

e) S=1/2 electrons

Page 6: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

S=1/2 Fermions in optical lattices

(small hopping limit)

Neel OrderedGapless Spin liquid HTcS made of cold atoms?

Page 7: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

S=0 bosons in lattices

In (a) and (b), one boson per site. t is the hopping and can be varied by tuning laser intensities of optical lattices; U is an intra-site interaction energy. In a Mott state, all bosons are localized.

M. P. A. Fisher et al., PRB 40, 546 (1989);On Mott states in a finite trap, seeJaksch et al., PRL. 81, 3108-3111(1998).

U

Mott states ( t << U)

Condensates (t >>U)

Page 8: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Absorption images of interference patterns as the laser intensity is increased (from a to h).

(a-d) BECs and (g-h) Mott insulating statesGreiner et al., Nature 415, 39( 02)

Page 9: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

.

2/1

0

2/1

)0,2

(:,

0

1

0

),0(:

.0||,|)1(:|

1|2

sin0|cos1|

2sin

),(|

RB

nSnnn

ie

ie

n

S=1 bosons with Anti-ferromagnetic interactions

.2,0

,,4

)()(

02

,2121

F

ggM

ag

grrrrU

FF

FF

Page 10: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Condensates of spin one bosons (d>1)

kzyx

kC

TV

C

TVN

TVN

nQ

C

pBEC.,,

,1

,0;

)!(

),0

(~

N(Q)

Q

xy

z

Snap shots

Page 11: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Half vortices

In a half vortex, each atom makes a spin rotation; a half vortex carries one half circulation of an integer vortex. A half vortex ring is also a hedgehog.

circulation

y

spin rotation

Z

x

y

x

The vortex is orientated along the z-direction; the spin rotation and circulating current occur in an x-y plane.

Z

ring

Page 12: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

S=1 bosons with anti-ferromagnetic interactions

in optical lattices (3D and 2D, N=2k)

Polar BEC (a)

Nematic MI (b)

Spin Singlet MI (c)

t: Hopping

).()

;)()

;)()

1

1

optVzt

SE

CE

Cc

SE

CE

CoptVzt

CEb

CE

optVzta

he critical value of is determined numerically.

.

03

)02

(4

03

)02

2(4

MN

aa

SE

MN

aa

CE

Page 13: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Schematic of microscopic wave functions

a) NMI; b) SSMI (N=2k); c) SSMI (N=2k+1 in 1d).Each pair of blue and red dots with a ring is a spin singlet.

.|!

2/)(~,0;|

!

)(~,1;

vac

k N

Nk

Ck

C

SSMIvac

k N

Nnk

C

NMIEEtz

CS

.02:

);31

(2:

.312

OSSMI

nnNONMI

CCCCO

Page 14: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Numerics I: Large N=2k limit

]0exp[~)( Qnnn

SSMI

NMI

vs. (proportional to hopping) is plotted here. Blue and Green lines represent metal stable states close to the critical point.

Page 15: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

The energy Vs.

SSMI

NMI

10.85

Page 16: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Spin singlet quantum “condensates” in 1D optical lattices

(SSQC)

tDVBC SSQC(“e”)

t

SSMI SSQC(“2e”)

(a)

(b)

]).[exp(ˆ,ˆ

2

;2)ˆ(.).(0.

2.

xklkb

Nik

Ck

C

xklklaZ

H

Nkb

NkC

Echl

bk

bzklkl

tm

H

ZH

mH

fqcH

S=1, “Q=e” bosons with AF interactions ===>S=0 , “Q=e” bosons interacting via Ising gauge fieldsN=2k+1

N=2k

Page 17: Spin Correlated States in Optical Lattices Fei Zhou ( ITP, Utrecht ) April 15, 2003 PIMS, Banff National Park, Canada Acknowledgement: E.Demler (Harvard),

Spin one bosons in optical lattices

Work in progress

• Towards topological fault tolerant quantum information storage

We have found

1) Polar Condensates

2) Nematic Mott insulators

3) Spin singlet Mott insulators

4) Valence bond crystals (N=2k+1,1D)

5) Spin singlet condensates (1D)