Title: Alignment dependence of HHG from N2, O2 and CO2
1Alignment dependence of HHG from N2, O2 and CO2
A.T. Le, X.M. Tong, and C.D. Lin
- Dept. of Physics, KSU
- Oct. 19, 2005
2Outlines
- Introduction
- MO-ADK a simplified picture
- HHG in N2 and O2 a comparison
- Minima in HHG interference effect
- Case of CO2
- Summary and outlook
3Kanai et al, Nature, 435, 470 (2005)
Ionization
N2
23rd HHG
Laser parameters 50fs, 800nm, 2x1014W/cm2 Tempera
ture 80K
O2
N2 and O2 HHG and ionization are in phase CO2 is
different!!!
CO2
4Vozzi et al, PRL 2005
800nm, 30fs 250 ?J
Inversion found at harmonic 33
Two-Point Emitter model
5MO-ADK ionization rates of O2 and N2
- Strong dependence on alignment
- For N2 good agreement with Litvinyuk et al, PRL
2003 - Agrees well with recent experiments at KSU
6Our initial goals
- Analytic form for angular dependence (both
ionization and HHG)? - Why CO2 is different?
For homonuclear diatomic molecules
Pn(-x)(-1)n Pn(x)
7HHG Three-Step model
- Tunneling ionization depends on orientation
- Propagation in laser field
- Recombination depends on orientation
Question Is the alignment dependence of
ionization is more important?
8Ionization MO-ADK theory
Tong et al, PRA 2002
Main contribution from m0
9N2
N2 case
Numerical results from Zhao et al, PRA 2003
10Numerical results Zhao et al, PRA 2003
Analytical result with only m0
O2
CO2
11HHG Lewenstein model
Molecular Orbital from GAMESS
12sin(1cos(?)), with 1 term
cos(1.5cos(?)), with 2 terms
13Numerical results
Present results
Zhou et al (PRA 2005)
Discrepancies found
14Comparison for different intensities
Need to include depletion for high intensity
15Typical result of HHG
- N2
- 800nm
- 30fs, Gaussian envelope
- 3x1014 W/cm2
cutoff 47
16Evidence of interference effect
Note the even orders
17Now odd orders! Symmetry
18Go one step further ionization OR recombination
at one center. What are the results?
19More evidence
Note the even orders
20Dependence on the alignment angle
N2 800nm 30fs 3x1014 W/cm2
cutoff 47
21High intensity
N2 800nm, 30fs 5x1014 W/cm2
cutoff 71
Positions of the minima not changed
22Long wavelength
N2 1064nm, 30fs 3x1014 W/cm2
Minima scale with wavelength
23Minima moving away
N2 800nm 30fs 3x1014 W/cm2
Position of the minima moved towards higher
order, as orientation angle increases
24Lein et al, PRL 2002
Solved numerically 2D Schrodinger equation for H2
25Two-point emitter model
Lein et al, PRA 2002
Numerical data from 2D H2 and H2
Positions of the Max Min are given by
- NOTE
- Min Max are interchanged for different
symmetries - Controversy about ?
26N2
Blue without atomic potential Red with atomic
potential
27O2
Blue without atomic potential Red with atomic
potential
Problem with large angles?
28Zimmermann et al, PRA 2005
N2
Weak-field approx. for recombination
2
Very complicated
1
Minima x Maxima
0
0
2
4
29CO2
O2
R0.232nm
R0.121nm
Quantum chemistry GAMESS code MOLEKEL plot
30CO2
Almost no contribution from C-center (small
polarization term)
31Preliminary results
cutoff 31
32No significant differences between these
molecules!??
33Summary Outlook
- HHG is max at 0o for N2 and 45o for O2
- Minima in HHG due to interference effect
Next
- Resolve the discrepancies
- Case of CO2
- Finish analytical approach
34N2 HOMO in momentum space
N2 HOMO
35N2 HOMO in momentum space s-wave contribution
N2 HOMO s-wave contribution
36N2 HOMO in momentum space p-wave contribution
N2 HOMO p-wave contribution
37dy
dz
38Higher intensity N2 800nm, 30fs 5x1014 W/cm2