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Hyperfine Studies of Hyperfine Studies of Lithium using Lithium using Saturated Absorption Saturated Absorption Spectroscopy Spectroscopy Tory Carr Tory Carr Advisor: Dr. Alex Cronin Advisor: Dr. Alex Cronin

Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

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Page 1: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Hyperfine Studies of Hyperfine Studies of Lithium usingLithium using

Saturated Absorption Saturated Absorption SpectroscopySpectroscopy

Tory CarrTory Carr

Advisor: Dr. Alex CroninAdvisor: Dr. Alex Cronin

Page 2: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Hyperfine Structure of Hyperfine Structure of 66Li & Li & 77LiLi

Page 3: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Normal SetupNormal SetupT

rans

mis

sion

Sig

nal

-15 -10 -5 0 5 10 15frequency (GHz)

6Li D1

7Li D1+

6Li D2

7Li D2

Page 4: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Theoretical LimitTheoretical Limit

8

6

4

2

0

Inte

nsity

0.20.10.0-0.1-0.2Frequency (GHz)

6 MHz

Page 5: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

ProblemProblem

Doppler Broadening “smears out” Doppler Broadening “smears out” resolutionresolution

Inte

nsity

420-2-4Frequency (GHz)

3 GHz

Page 6: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Normal SetupNormal SetupT

rans

mis

sion

Sig

nal

-15 -10 -5 0 5 10 15frequency (GHz)

6Li D1

7Li D1+

6Li D2

7Li D2

Theory at 375 C

Page 7: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Saturated Absorption SetupSaturated Absorption Setup

Page 8: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

New SpectrumNew Spectrum30x10

-3

25

20

15

10

5

0

Tra

nsm

issi

on s

igna

l (m

W)

151050-5-10-15Frequency (GHz)

FS

HFS

HFS

7Li D2

7Li D1+

6Li D2

6Li D1

experimental data theoretical model

Page 9: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Saturated Absorption SignalSaturated Absorption SignalT

rans

mis

sion

Sig

nal

Frequency Scan

800MHz

Data collected at 375 C

Page 10: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Light as seen from the Light as seen from the atomsatoms

Pump beam

probe beamv0

Page 11: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Population DifferencePopulation Difference

Page 12: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Scan in frequencyScan in frequency

+dv

-dv

0

Page 13: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Theoretical ModelTheoretical Model

Page 14: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Isotope/ Transition Isotope/ Transition DifferenceDifference

Page 15: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Variation with Buffer Gas Variation with Buffer Gas PressurePressure

Page 16: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Temperature variationTemperature variation

Page 17: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Temperature variation- diff Temperature variation- diff sigsig

Page 18: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

Maximum in difference Maximum in difference signalsignal

Maximum Signal When:

Page 19: Hyperfine Studies of Lithium using Saturated Absorption Spectroscopy Tory Carr Advisor: Dr. Alex Cronin

ConclusionConclusion

Limiting Factors in resolutionLimiting Factors in resolution– Other broadening mechanismsOther broadening mechanisms– Residual Doppler broadeningResidual Doppler broadening

Improvements to setupImprovements to setup– Improved alignmentImproved alignment– Reduce laser linewidthReduce laser linewidth

Further experimentsFurther experiments– Effects of polarizationEffects of polarization– Magnetic field effects Magnetic field effects