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Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve d’Ascq, France www.phlam.univ-lille1.fr/atfr/cq Pascal Szriftgiser Jean Ringot Hans Lignier J. C. G. In collaboration with Dominique Delande LKB - Paris
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Page 1: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Presentation

Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et

Molécules (PhLAM)Villeneuve d’Ascq, France

www.phlam.univ-lille1.fr/atfr/cq

Pascal Szriftgiser Jean RingotHans Lignier

J. C. G.

In collaboration with Dominique Delande LKB - Paris

Page 2: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

System

The systemCold atoms in a standing wave

d L/2

V0

dB

H = P2/2 + K cos ( )n (t-n)

Theory: Graham, Schlautman, Zoller PRA 45, 19 (1992) Exp: Moore et al., PRL 73, 2974 (1994); Klappauf et al. PRL 81, 1203 (1998)

Page 3: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Quantum chaos

Classical phase portrait

K = 0.9 K = 2

K = 5 K = 10

Regular dynamics:Periodic orbits

Mixt dynamics:Stability islands

Mixt: Small islands Chaotic:Ergodic diffusion

Page 4: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Quantum chaos

Momentum evolution

P(p) ~ e-|p|/pL

Log P

p

Page 5: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Quantum chaos

Dynamical localization

t

<Ec>

Quantum

ClassicalP(p)

P(p)

P(p)

Theory: Casati, Chirikov, Ford, Izrailev (1979) Experience : Moore, Robinson, Bharucha, Williams, Raizen (1994)

tL ~ tH = h/<E>

Heisenberg time

Page 6: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

System

Momentum distribution measurement

Stimulated Raman transitions

R

1 2

hf

Resonant probe

F = 3F = 4

v0 = R/2kL

Mkvv L2

0

vr/10

Page 7: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Quantum chaos

Experiment

Page 8: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Dynamical localization

Momentum distributions

f (kHz)0.001

0.01

0.1

1

-300 -200 -100 0 100 200 300

Final distribution (50 kicks)

-40 -20 0 20 40p/hk

Initial distribution

Exponencial fitGaussian fit

Page 9: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Dynamical localization

Quasi-periodic kicks

f1

f2

f1/19

0

Page 10: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Dynamical localization

Dynamical localization with “two colors”

For « irrational » values of the frequency ratio, the classical diffusive behavior is preserved

0.01

0.1

1

Initial distribution

Freq. ratio = 1.000

Freq. ratio = 1.083

Initial distributionFrequency ratio = 1,0833…

Frequency ratio = 1

Num

ber

of a

tom

s (l

og)

Momentum (hk)-50 0 50

Page 11: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Dynamical localization

Localization measurement

Initial

Localized

Delocalized

Consevation of the atom number The population P(0) of the 0 velocity class is a mesurement of the

degree of localization

Page 12: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Dynamical localization

Localization “spectrum”

1

1/22

3/23/41/3 2/3

4/35/3

5/4

1/4

Loc

aliz

atio

n P

(0)

Frequency ratio0 0.5 1 1.5 2

Breaking the periodicity destroys localization

J. Ringot, P. Szriftgiser, J.C.G., D. Delande, PRL 85, 2341 (2000)

Page 13: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

“Sub-Fourier” lines

4.8

4.6

4.4

4.2

4.0

3.8

3.6

1.151.101.051.000.950.900.85

Ato

mic

sig

nal

Frequency ratio r

F12

Experimental F12

The lines ARE NOT FT’s of a temporal signal!

« Sub-Fourier » resolution: f1 f2 for Tmes < 1/|f1-f2|

P. Szriftgiser, J. Ringot, D. Delande, J.C.G., submited to PRL

Resolution ~ 1/Texp

Exp)

F12

137

Page 14: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

= 0.02 1/14

= 0.05 1/37

Quantum interference sensitivity ot frequency and phase

Interpretation

Page 15: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

Interpretation

0.05

0.10

0.15

0.20

0.25

0 50 100 150 200

0 50 100 150 200Kicks

0.0

5

0.

10

0.

15

0.20

0.25

Wid

th

num

ber

of k

icks

K [1+ A cos(2rt)] n (t-n)

r

Page 16: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

Physical mechanism

= P2

2N

r -1r

e -i

N/rN

N ~ 0 periodicity

N ~ /2 quasi-periodicity

Résolution is due to the dynamical spectrum, not to the excitation spectrum

Page 17: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

Evolution of the width

4

68

0.01

2

4

68

0.1

2

4

68

1

5 6 7 8 910

2 3 4 5 6 7 8 9100

N

r

N

Fourier limit

K = 14

K = 28

K = 42

1 µs 2 µs3 µs

1/N2

= D N2 N

r -1r

~ N2

Before localization

= PL

2

2 Nr -1r

~ N

After localization

Page 18: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Conclusion

Conclusion

Complex dynamics – unexpected results

Simplicity and versatility

Detailed experimental study of the linewidth

Interpretation – physical mechanisms

New conditions: anomalous diffusion r ~1/N3

Quatum-chaotic signal processing ultrafast frequency locking (?)

Page 19: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Funding

Funding

CNRS

Ministère de la Recherche

Région Nord-Pas de Calais

Comunidade Européia

Page 20: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

Resolution (quantitative)

f

f1

f2

F12

r = 0.87

F12

r

F12/2

F12 measures the Fourier resolution

Page 21: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

Excitation spectrum

TF

T TF1/T

TF1/

1/

1/T

Page 22: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

+1-1

0

-140

-120

-100

-80

-60

-40

-300 0 300

DC Bias 4.6 GHz

Generation of the Raman beams

Master

S+1

S-1

FP

Raman setup Experimental setup

Page 23: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

“Sub-Fourier” resonances4.8

4.6

4.4

4.2

4.0

3.8

3.6

1.151.101.051.000.950.900.85

Ato

mic

sig

nal

Frequency ratio r

F12Experimental F12

Experimental)F12

137

P. Szriftgiser, J. Ringot, D. Delande, J.C.G., submetido a Nature

Page 24: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Sub-Fourier

“Sub-Fourier” resonances4.8

4.6

4.4

4.2

4.0

3.8

3.6

1.151.101.051.000.950.900.85

Ato

mic

sig

nal

Frequency ratio r

F12Experimental F12

Experimental)F12

137

P. Szriftgiser, J. Ringot, D. Delande, J.C.G., submetido a Nature

Page 25: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Dynamical localization

Kinetic energy

0 10 20 30 40 50

Kicks

tL

Page 26: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

System

Velocity distribution for the sisyphus molasses

-250 -200 -150 -100 -50 0 50 100 150 200

Désaccord Raman (kHz)

0.0

0.5

1.0

1.5

72 kHz

T = 3.3 µK

Raman detuning

Page 27: Presentation Quantum chaos with cold atoms in a standing wave Laboratoire de Physique des Lasers Atomes et Molécules (PhLAM) Villeneuve dAscq, France.

Active magnetic field compensation

-100 0 100

ON+ offset

OFF+offset

1 kHz ~ 300 µG ~ vR/8

ON+offset

(kHz)

BW ~ 500 Hz

Magnetic field compensation Experimental setup

Bx

ByBz


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