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Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser...

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Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat (Mentor)
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Page 1: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser

Radiation

Ryan DuToitXiaoxu Guan (Mentor)

Klaus Bartschat (Mentor)

Page 2: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Overview

• Motivation– Intense and ultrashort light pulses have opened up

new avenues to trace and steer electronic motion in atomic and molecular systems (atomic-scale electron dynamics).

– Generalize previous results to elliptical polarization

Page 3: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Overview

• Theoretical Formulation– Discretization of system using prolate spheroidal

coordinates– Solve time dependent Schrödinger Equation

(complicated partial differential equation)

Page 4: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Overview

• Results– Survival probability: orientation dependence– Angular distribution of photoelectron

• Outlook and Future Work

Page 5: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Introduction to Simulation

• Simulate short laser pulse acting on a H2+ ion

• 1018 attoseconds = 1 second

• More attoseconds in one second than there are seconds in the age of the universe!

• The electric field interacts with the electron, which is what we are interested in.

Page 6: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Prolate Spheroidal Coordinate System

Page 7: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Electric Field

Linear Polarization Elliptical Polarization

Page 8: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.
Page 9: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Electric Field

Page 10: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Theoretical Foundation

• Need to solve the time dependent Schrödinger Equation for the electron:

• Using time propagation, solution is:

Page 11: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Theoretical Foundation

• Exponential of large matrix is a MASSIVE computational task

• Finite-Element Discrete-Variable Representation (FE-DVR)– Divide space into separate elements– Expand wavefunction into basis of Lagrange polynomials– Use Gaussian quadrature to approximate integrals

• Transform H into a smaller h matrix– Short iterative Lanczos algorithm

Page 12: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.
Page 13: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Solving Wavefunction

• After expanding into basis:

• Matrix h is orders of magnitude smaller than H– Rank of H ≈ 200,000– Rank of h ≈ 15

• Diagonalization goes like• This is an approximation

Page 14: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Execution

• Code written in FORTRAN

• Use MPI for parallel programming

• Job runs on cluster here at Drake– 8 processors, 8 cores per processer = 64 threads

• Entire run takes 2-6 hours

Page 15: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Theoretical Foundation

• Once we have wave function of electron, we extract physical information via operators.

• Survival Probability

• Angular distribution of photoelectron

Page 16: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.
Page 17: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

What is angular distribution?

• Probability of electron being ejected at a given angle

• Quantum effects easy to see

Page 18: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Parallel Electric Field

40 eV 70 eV 150 eV

200 eV 250 eV 300 eV

Page 19: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Perpendicular Electric Field

40 eV 70 eV 150 eV

200 eV 250 eV 300 eV

Page 20: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Circular Electric Field

40 eV 70 eV 150 eV

200 eV 250 eV 300 eV

Page 21: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Conclusions

• Results confirm validity of our numerical implementation

• Orientation of polarization has significant impact on final result

Page 22: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Future Work

• Use longer wavelengths (infrared light)

• Include nuclear motion

• Address more complex molecular systems

Page 23: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Acknowledgements

• Mentors– Dr. Xiaoxu Guan – Dr. Klaus Bartschat

• Project support through NSF

Page 24: Ionization of the Hydrogen Molecular Ion by Ultrashort Intense Elliptically Polarized Laser Radiation Ryan DuToit Xiaoxu Guan (Mentor) Klaus Bartschat.

Questions?


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