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Dynamics of irradiated clusters and molecules

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Title: Dynamics of irradiated clusters and molecules


1
  • Irradiation of solvated
  •  bio molecules
  • Microscopic mechanisms
  • - Role of water environment
  • Medical applications
  • Society applications

Dynamics of irradiatedclusters and
molecules
  • Laser irradiations of
  • free clusters
  • Huge energy absorption in
  • intense laser fields
  • Production of energetic
  • electrons, ions, photons
  • - Many-body  laboratory 
  • Time resolved dynamics

Deposited/embedded species - Shaping at
nanoscale - Defect formation - Chromophore
effects and therapy applications
2
Specifications
Dynamical description of irradiation and
response of - Electrons - Ions - Environment
3
Example Na9 laser
Laser intensity
Laser polarization
? 0
I 5. 1011 W.cm-2 Pulse in cos2 Delay 50
fs FWHM 125 fs w 2.3 eV
4
Model (cluster/molecule)
? Electrons
? Local Density Approximation (LDA)
Self Interaction Correction (SIC)
? Semi-classical theory available (Vlasov, VUU)
? Ions
? Explicit ions via pseudo potentials ? Detail of
structure ionic Molecular Dynamics (MD)
5
Model (cluster/molecule)
? Electrons
fs ps
? Local Density Approximation (LDA)
Self Interaction Correction (SIC)
? Semi-classical theory available (Vlasov, VUU)
? Ions
? Explicit ions via pseudo potentials ? Detail of
structure ionic Molecular Dynamics (MD)
6
Observables
? Electrons
? Excitation energy
? Ions
7
Electron emission from irradiated clusters
ds/dE
s ( w )
8
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
ds/dW
Photon energy
Laser
s ( w )
9
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
Time resolved dynamics
ds/dW
III
II
Photon energy
Laser
FEL lasers
s ( w )
Energy resol. angul. distri.
10
Energy resolved angular distributions
Angle-energy correlation ? ds/dWdE
11
Energy resolved angular distributions
The orientation Problem
Angle-energy correlation ? ds/dWdE
12
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
Time resolved dynamics
ds/dW
III
II
Photon energy
Laser
FEL lasers
s ( w )
Energy resol. angul. distri.
13
Ethylene in laser fields
14
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
Time resolved dynamics
ds/dW
III
II
Photon energy
Laser
FEL lasers
s ( w )
Energy resol. angul. distri.
15
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
Time resolved dynamics
ds/dW
III
II
Photon energy
Laser
FEL lasers
s ( w )
Energy resol. angul. distri.
16
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
Time resolved dynamics
ds/dW
III
Photon energy
Laser
s ( w )
Energy resol. angul. distri.
17
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
Time resolved dynamics
Yield
Optical Response
ds/dW
III
Photon energy
Laser
s ( w )
Energy resol. angul. distri.
18
Electron emission from irradiated clusters
Electron emission from irradiated clusters
ds/dE
Time resolved dynamics
Yield
Optical Response
ds/dW
III
Photon energy
Laser
s ( w )
Energy resol. angul. distri.
19
 Pump probe for vibration
Strong
Ionization maps Vibrations
20
Monopole  Pump Probe  Dynamics
Ionization as a function of delay between pump
and probe laser pulses
? Ionic vibration period ? Expansion rate
21
  • Environment
  • Hierarchical model
  • Dynamical QM/MM
  • - Na_at_Ar, Kr, Ne done
  • - Na _at_ MgO done
  • - Na_at_H2O in the oven
  • - C, N, O _at_ H2O in near future
  • - C, N, O _at_ H2O _at_Ar in future

Solvated molecules
Irradiation of clusters and molecules
  • Time resolved dynamics
  • Key importance of non adiabatic
  • electron/ion couplings
  • Photoelectron spectroscopy
  • energy, angle done/ in the oven
  • - Pump and probe scenarios done
  • FEL laser domain in the oven
  • Collisional scenarios in near future
  • Atto laser domain in the oven

Dynamical description of irradiation and
response of - electrons - ions - environment
Free clusters
Dynamics of ionization in TDDFT - Self
Interaction problem (SIC) - Benchmark TDSIC
calculation done - Simple approximations in the
oven - Dynamical correlations in the future
(electronic transport)
Signals from electrons
People P. M. Dinh, P. G. Reinhard, ES, Z. Wang
Electron Emission
Deposited clusters
22
Example of collision Na9 Ar 8
E 2.32 keV b 20 a0
23
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