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Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

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Page 1: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Making molecules sing: Quantum beats and interference as

probes of molecular structure

Katharine Reid

Inaugural lecture, May 27th 2010

Page 2: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Wolverley High School, Kidderminster

Page 3: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Science at Wolverley

Melvyn Kershaw

Page 4: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

University of Sussex

Page 5: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Chemical Physics at Sussex

Harry Kroto Tony StaceTony McCafferyJohn Murrell

Page 6: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Light Sources

Page 7: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Flashlamp Laser

Broad bandIncoherentPulsed

Narrow bandCoherentContinuous

Page 8: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Spectral profile and bandwidth

Flashlamp Continuous laser

Page 9: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Molecules in excited states

Page 10: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Molecules in excited states

Laser induced fluorescence

Page 11: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010
Page 12: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

State-selection and detection

Page 13: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

excitation collision emission

Probing the dynamics of chemical reactions

Page 14: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Dick Zare

Page 15: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Stanford University

Page 16: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Interference

Thomas Young A double slit

Page 17: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Interference

Constructive: bright spot

Page 18: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Interference

Destructive: dark spot

Page 19: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

d

L

y

Interference

The first bright spot occurs at y = L/d

If = 530 nm (green), L = 14 m and d = 50 microns

Maximum of first bright spot is at y = 14.8 cm

Page 20: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Electron waves

Atomic orbitals – bound electrons

Page 21: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Ejecting electrons with light

Page 22: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Simplifying spectra

Thermal congestion

State selection

Page 23: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Photoelectron interference patterns

Laser polarization direction

Constructive interference

Destructive interference

These patterns provide unique information on molecular structure

Page 24: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010
Page 25: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

University of Nottingham

Lunch time near the School of Chemistry, University Park!!

Page 26: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

The “younger chemists” c. 1996

Page 27: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Who is the odd one out?

Page 28: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Time-resolved measurements

Page 29: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Photoinitiation of H2 + Cl2

Page 30: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Flash photolysis

The Nobel Prize in Chemistry 1967

Eigen Norrish Porter

"for their studies of extremely fast chemical reactions, effected by disturbing the equilibrium by means of very short pulses of energy"

Page 31: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Understanding photochemistry

vision photosynthesis solar cells

Page 32: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Laser Bandwidth

narrow bandcontinuous/long pulse

broad bandshort pulse

Page 33: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

State-selection ...

Narrow band

Long pulse

Broad band

Short pulse

Page 34: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Vibrational states in polyatomic molecules

Page 35: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

On excitation only certain vibrational states can be prepared

Page 36: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Vibrations can be coupled

Page 37: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Time-resolved measurements

t = 0 t1 t2

Page 38: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Nano what?

1 ps = 1000 fs

Page 39: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Femtochemistry

The Nobel Prize in Chemistry 1999

"for his studies of the transition states of chemical reactions using femtosecond spectroscopy”

Ahmed Zewail

Page 40: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Intramolecular vibrational energy redistribution

Timescale: tens of picoseconds

Page 41: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Questions

1. What is the timescale?2. What is the mechanism (which dark states are

involved)?3. Can we influence the process? (Bond-selective

chemistry, coherent control, mode-specificity)4. What can we learn about chemical reactivity?

Page 42: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

The experiments!

Page 43: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Toluene absorption spectrum

Page 44: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Photoelectron imaging

Page 45: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

t = 0 t1 t2

Page 46: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

0 ps

Page 47: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

1 ps

Page 48: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

2 ps

Page 49: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

3 ps

Page 50: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

4 ps

Page 51: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

5 ps

Page 52: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

6 ps

Page 53: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Time-resolved photoelectron spectra

Page 54: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Peak intensities versus time

Time delay / picoseconds

Page 55: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Quantum beats

Page 56: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Beating patterns

E4 329.63 HzF4 349.23 Hz

Page 57: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Making molecules sing?

Page 58: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Coupled vibrational states

Three states = two observable frequencies

Page 59: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Analysis of quantum beats in toluene

From this we can learn:

1. The timescale of the dynamics2. The “coupling matrix elements”3. The exact vibrational energies

More importantly, we have developed and tested a method that can be used to interrogate more complicated dynamical processes.

Page 60: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Toluene at higher excitation energy ...

Intensity decreases with time

Intensity increases with time

Page 61: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Where to from here?

Page 62: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010
Page 63: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

Support

Neil Barnes

Mike Towrie

Pavel Matousek

Kate Ronayne

The workshop

Students

Dave Townsend

Paul Whiteside

Chris Hammond

Paul Hockett

Mick Staniforth

Alistair Green

Jonathan Midgley

Postdocs

Simon Duxon

Tom Field

Jon Underwood

Julia Davies

Susan Bellm

Adrian King

Help with this lecture

Neil Barnes

Paul Gaetto

Collaborators

Ivan Powis

Tim Wright

Thanks to:

Mentors

Melvyn Kershaw

Tony McCaffery

Dick Zare

Page 64: Making molecules sing: Quantum beats and interference as probes of molecular structure Katharine Reid Inaugural lecture, May 27 th 2010

And thanks to everyone for their support.