Laser-driven rotational dynamics of gas-phase molecules: control and applications

Doctor of Philosophy === Department of Physics === Vinod Kumarappan === In this thesis, our work on developing new techniques to measure and enhance field-free molecular alignment and orientation is described. Non-resonant femtosecond laser pulses are used to align and orient rotationally-cold gas-p...

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Main Author: Ren, Xiaoming
Language:en_US
Published: Kansas State University 2013
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Online Access:http://hdl.handle.net/2097/15954
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spelling ndltd-KSU-oai-krex.k-state.edu-2097-159542016-03-01T03:51:55Z Laser-driven rotational dynamics of gas-phase molecules: control and applications Ren, Xiaoming Molecular alignment Orientation High harmonic generation Physics (0605) Doctor of Philosophy Department of Physics Vinod Kumarappan In this thesis, our work on developing new techniques to measure and enhance field-free molecular alignment and orientation is described. Non-resonant femtosecond laser pulses are used to align and orient rotationally-cold gas-phase molecules. The time-dependent Schrodinger equation is solved to simulate the experimental results. A single-shot kHz velocity map imaging (VMI) spectrometer is developed for characterizing 1D and 3D alignment. Stimulated by a novel metric for 3D alignment proposed by Makhija et al. [Phys. Rev. A 85,033425 (2012)], a multi-pulse scheme to improve 3D alignment is demonstrated experimentally on difluoro-iodobenzene molecules and the best field-free 3D alignment is achieved. A degenerate four wave mixing probe is developed to overcome limitations in VMI measurement; experiments on different types of molecules show good agreement with computational results. Highly aligned linear molecules are used for high harmonic generation experiments. Due to the high degree of alignment, fractional revivals, variation of revival structure with harmonic order and the shape resonance and Cooper minimum in the photoionization cross section of molecular nitrogen are all observed directly in experiment for the first time. Enhanced orientation from rotationally cold heteronuclear molecules is also demonstrated. We follow the theory developed by Zhang et al. [Phys. Rev. A 83, 043410 (2011)] and demonstrate experimentally for the first time that for rotationally cold carbon monoxide an aligning laser pulse followed by a two-color laser pulse can increase field-free orientation level by almost a factor of three compared to using just the two-color pulse. 2013-07-03T15:42:31Z 2013-07-03T15:42:31Z 2013-07-03 2013 August Dissertation http://hdl.handle.net/2097/15954 en_US Kansas State University
collection NDLTD
language en_US
sources NDLTD
topic Molecular alignment
Orientation
High harmonic generation
Physics (0605)
spellingShingle Molecular alignment
Orientation
High harmonic generation
Physics (0605)
Ren, Xiaoming
Laser-driven rotational dynamics of gas-phase molecules: control and applications
description Doctor of Philosophy === Department of Physics === Vinod Kumarappan === In this thesis, our work on developing new techniques to measure and enhance field-free molecular alignment and orientation is described. Non-resonant femtosecond laser pulses are used to align and orient rotationally-cold gas-phase molecules. The time-dependent Schrodinger equation is solved to simulate the experimental results. A single-shot kHz velocity map imaging (VMI) spectrometer is developed for characterizing 1D and 3D alignment. Stimulated by a novel metric for 3D alignment proposed by Makhija et al. [Phys. Rev. A 85,033425 (2012)], a multi-pulse scheme to improve 3D alignment is demonstrated experimentally on difluoro-iodobenzene molecules and the best field-free 3D alignment is achieved. A degenerate four wave mixing probe is developed to overcome limitations in VMI measurement; experiments on different types of molecules show good agreement with computational results. Highly aligned linear molecules are used for high harmonic generation experiments. Due to the high degree of alignment, fractional revivals, variation of revival structure with harmonic order and the shape resonance and Cooper minimum in the photoionization cross section of molecular nitrogen are all observed directly in experiment for the first time. Enhanced orientation from rotationally cold heteronuclear molecules is also demonstrated. We follow the theory developed by Zhang et al. [Phys. Rev. A 83, 043410 (2011)] and demonstrate experimentally for the first time that for rotationally cold carbon monoxide an aligning laser pulse followed by a two-color laser pulse can increase field-free orientation level by almost a factor of three compared to using just the two-color pulse.
author Ren, Xiaoming
author_facet Ren, Xiaoming
author_sort Ren, Xiaoming
title Laser-driven rotational dynamics of gas-phase molecules: control and applications
title_short Laser-driven rotational dynamics of gas-phase molecules: control and applications
title_full Laser-driven rotational dynamics of gas-phase molecules: control and applications
title_fullStr Laser-driven rotational dynamics of gas-phase molecules: control and applications
title_full_unstemmed Laser-driven rotational dynamics of gas-phase molecules: control and applications
title_sort laser-driven rotational dynamics of gas-phase molecules: control and applications
publisher Kansas State University
publishDate 2013
url http://hdl.handle.net/2097/15954
work_keys_str_mv AT renxiaoming laserdrivenrotationaldynamicsofgasphasemoleculescontrolandapplications
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