Title: Fragmentation Dynamics of H2 D2
1Fragmentation Dynamics of H2 / D2 in Intense
Ultrashort Laser Pulses
U. Thumm
B. Feuerstein T. Niederhausen
Kansas State University
2INTRODUCTION
3H2
H2
4Dissociation and Ionization paths
5METHOD OF CALCULATION
6Improved soft-core Coulomb potential
7Dipole oscillator strength for sg su transitions
Kulander et al PRA 53 (1996) 2562
8Array for 2x1D collinear non-BO wave packet
propagation virtual detector method
z electron coordinate R internuclear distance
Grid ?z 0.2 a.u. ?R 0.05 a.u.
9(No Transcript)
10RESULTS
Time evolution of wave function and norm (on
numerical grid)
Evolution of nuclear probability density
r(R,t ) dissociation probability ionization
rate jz(R,t) CE probability
Kinetic energy spectra of the fragments
- Single pulse (I 0.05 0.5 PW/cm2, 25 fs)
- vibrational state and intensity dependence
B) Pump-probe pulses (I 0.3 PW/cm2, 25
fs) CE-imaging of dissociating wave packets
C) Ultrashort pump-probe pulses (I 1 PW/cm2,
5 fs) CE-imaging of bound and dissociating wave
packets
11v 4 0.2 PW/cm2 25 fs
PCE(t)
Dissociation
PD (t)
Laser
Norm(t)
total fragment energy eV
log scale
Contours jz(R,t)
12Norm(t)
v 0 0.2 PW/cm2 25 fs
Laser
PD (t)
PCE(t)
log scale
13v 2 0.2 PW/cm2 25 fs
PCE(t)
PD (t)
Norm(t)
Laser
log scale
Contours jz(R,t)
14v 4 0.2 PW/cm2 25 fs
PCE(t)
Dissociation
PD (t)
Laser
Norm(t)
log scale
Contours jz(R,t)
15PCE(t)
v 6 0.2 PW/cm2 25 fs
PD (t)
Laser
Norm(t)
log scale
Contours jz(R,t)
16PCE(t)
v 8 0.2 PW/cm2 25 fs
Laser
PD (t)
Norm(t)
log scale
Contours jz(R,t)
17Branching ratio Dissociation vs. Coulomb
explosion
18RESULTS II
- Single pulse (I 0.05 0.5 PW/cm2, 25 fs)
- vibrational state and intensity dependence
B) Pump-probe pulses (I 0.3 PW/cm2, 25
fs) CE-imaging of dissociating wave packets
C) Ultrashort pump-probe pulses (I 1 PW/cm2,
5 fs) CE-imaging of bound and dissociating wave
packets
19Pump-probe experiment
D2 target 0.1 PW/cm2 2 x 80 fs variable delay 0
- 300 fs
Trump, Rottke and Sandner PRA 59 (1999) 2858
20Pump-probe (D2) v 0 0.3 PW/cm2 2 x 25 fs
delay 30 fs
Norm(t)
PCE(t)
Dissociation
Coulomb explosion
Laser
PD (t)
- - - - - (Coulomb only)
log scale
Contours jz(R,t)
21Pump-probe (D2) v 0 0.3 PW/cm2 2 x 25 fs
delay 50 fs
Norm(t)
PCE(t)
Dissociation
Coulomb explosion
PD (t)
Laser
- - - - - (Coulomb only)
b
c
a
log scale
Contours jz(R,t)
c
b
a
22Pump-probe (D2) v 0 0.3 PW/cm2 2 x 25 fs
delay 70 fs
Norm(t)
PCE(t)
Dissociation
Coulomb explosion
Laser
PD (t)
- - - - - (Coulomb only)
b
c
a
log scale
Contours jz(R,t)
c
b
a
23RESULTS III
- Single pulse (I 0.05 0.5 PW/cm2, 25 fs)
- vibrational state and intensity dependence
B) Pump-probe pulses (I 0.3 PW/cm2, 25
fs) CE-imaging of dissociating wave packets
C) Ultrashort pump-probe pulses (I 1 PW/cm2,
5 fs) CE-imaging of bound and dissociating wave
packets
24Time evolution of a coherent superposition of
states
25autocorrelation
26Coulomb explosion imaging of nuclear wave packets
Fragment yield Y at Ekin Y(Ekin) dEkin
?(R)2 dR ? Y(Ekin) R 2 ?(R)2
1/R
d d
Probe
?(R,t)2
R
D2
Pump
D2
initial ?(R)2
27?(R)2 reconstruction from CE fragment kin.
energy spectra
moving wave packet
28?(R)2 reconstruction from CE fragment kin.
energy spectra
turning point
29?(R)2 reconstruction from CE fragment kin.
energy spectra
? 40 fs
?(R)2
30?(R)2 reconstruction from CE fragment kin.
energy spectra
revival