Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton Ionization

In this review, we report on recent progress in the generation and application of multichromatic polarization-tailored pulse sequences for the coherent control of multiphoton ionization (MPI) dynamics and present unpublished experimental results that complement our previous findings. Specifically, w...

Full description

Bibliographic Details
Main Authors: Kevin Eickhoff , Lars Englert , Tim Bayer , Matthias Wollenhaupt
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-08-01
Series:Frontiers in Physics
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fphy.2021.675258/full
id doaj-95e969cd86cd4166b362c4cf1283d996
record_format Article
spelling doaj-95e969cd86cd4166b362c4cf1283d9962021-08-20T08:24:22ZengFrontiers Media S.A.Frontiers in Physics2296-424X2021-08-01910.3389/fphy.2021.675258675258Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton IonizationKevin Eickhoff Lars Englert Tim Bayer Matthias WollenhauptIn this review, we report on recent progress in the generation and application of multichromatic polarization-tailored pulse sequences for the coherent control of multiphoton ionization (MPI) dynamics and present unpublished experimental results that complement our previous findings. Specifically, we utilize single-color, bichromatic, and trichromatic polarization-controlled pulse sequences generated by spectral amplitude, phase and polarization modulation of a carrier-envelope phase (CEP)-stable white light supercontinuum for MPI. The analysis of the number of ionization pathways and the number of distinct final free electron states shows that both increase significantly, but scale differently with the number of absorbed photons and the number of pulses in the sequence. In our experiments, ultrafast polarization shaping is combined with high-resolution photoelectron tomography to generate, control, and reconstruct three-dimensional photoelectron momentum distributions from atomic and molecular MPI. We discuss the use of polarization-controlled single-color and bichromatic pulse sequences in perturbative and non-perturbative coherent control of coupled electron-nuclear dynamics in molecules, atomic spin-orbit wave packet dynamics and the directional photoemission from atoms and chiral molecules. We compare the coherent control of CEP-insensitive intraband multipath interference in the MPI with a fixed number of photons with CEP-sensitive interband multipath interference in the ionization with a different number of photons. The generation and control of free electron vortices with even-numbered rotational symmetry by MPI with single-color pulse sequences is contrasted with the bichromatic control of CEP-sensitive electron vortices with odd-numbered rotational symmetry. To illustrate the potential of multichromatic pulse sequences for coherent control, we present a trichromatic scheme for shaper-based quantum state holography.https://www.frontiersin.org/articles/10.3389/fphy.2021.675258/fullcoherent controlbichromatic polarization shapingmultiphoton ionizationphotoelectron tomographychiral molecules
collection DOAJ
language English
format Article
sources DOAJ
author Kevin Eickhoff 
Lars Englert 
Tim Bayer 
Matthias Wollenhaupt
spellingShingle Kevin Eickhoff 
Lars Englert 
Tim Bayer 
Matthias Wollenhaupt
Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton Ionization
Frontiers in Physics
coherent control
bichromatic polarization shaping
multiphoton ionization
photoelectron tomography
chiral molecules
author_facet Kevin Eickhoff 
Lars Englert 
Tim Bayer 
Matthias Wollenhaupt
author_sort Kevin Eickhoff 
title Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton Ionization
title_short Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton Ionization
title_full Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton Ionization
title_fullStr Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton Ionization
title_full_unstemmed Multichromatic Polarization-Controlled Pulse Sequences for Coherent Control of Multiphoton Ionization
title_sort multichromatic polarization-controlled pulse sequences for coherent control of multiphoton ionization
publisher Frontiers Media S.A.
series Frontiers in Physics
issn 2296-424X
publishDate 2021-08-01
description In this review, we report on recent progress in the generation and application of multichromatic polarization-tailored pulse sequences for the coherent control of multiphoton ionization (MPI) dynamics and present unpublished experimental results that complement our previous findings. Specifically, we utilize single-color, bichromatic, and trichromatic polarization-controlled pulse sequences generated by spectral amplitude, phase and polarization modulation of a carrier-envelope phase (CEP)-stable white light supercontinuum for MPI. The analysis of the number of ionization pathways and the number of distinct final free electron states shows that both increase significantly, but scale differently with the number of absorbed photons and the number of pulses in the sequence. In our experiments, ultrafast polarization shaping is combined with high-resolution photoelectron tomography to generate, control, and reconstruct three-dimensional photoelectron momentum distributions from atomic and molecular MPI. We discuss the use of polarization-controlled single-color and bichromatic pulse sequences in perturbative and non-perturbative coherent control of coupled electron-nuclear dynamics in molecules, atomic spin-orbit wave packet dynamics and the directional photoemission from atoms and chiral molecules. We compare the coherent control of CEP-insensitive intraband multipath interference in the MPI with a fixed number of photons with CEP-sensitive interband multipath interference in the ionization with a different number of photons. The generation and control of free electron vortices with even-numbered rotational symmetry by MPI with single-color pulse sequences is contrasted with the bichromatic control of CEP-sensitive electron vortices with odd-numbered rotational symmetry. To illustrate the potential of multichromatic pulse sequences for coherent control, we present a trichromatic scheme for shaper-based quantum state holography.
topic coherent control
bichromatic polarization shaping
multiphoton ionization
photoelectron tomography
chiral molecules
url https://www.frontiersin.org/articles/10.3389/fphy.2021.675258/full
work_keys_str_mv AT kevineickhoff multichromaticpolarizationcontrolledpulsesequencesforcoherentcontrolofmultiphotonionization
AT larsenglert multichromaticpolarizationcontrolledpulsesequencesforcoherentcontrolofmultiphotonionization
AT timbayer multichromaticpolarizationcontrolledpulsesequencesforcoherentcontrolofmultiphotonionization
AT matthiaswollenhaupt multichromaticpolarizationcontrolledpulsesequencesforcoherentcontrolofmultiphotonionization
_version_ 1721201314559426560