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Rotational excitation and molecular alignment in intense laser fields
Tamar Seideman
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Corresponding author for this work
Chemistry
Research output
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Contribution to journal
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Article
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peer-review
306
Scopus citations
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Dive into the research topics of 'Rotational excitation and molecular alignment in intense laser fields'. Together they form a unique fingerprint.
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Keyphrases
Molecular Alignment
100%
Rotational Excitation
100%
Intense Laser Field
100%
Angular Distribution
50%
Photodissociation
50%
Spatial Alignment
50%
Rotational Wave Packet
50%
Well-defined
25%
Material Deposition
25%
Reaction Dynamics
25%
Moderate Intensity
25%
Anisotropy
25%
Laser Pulse
25%
Degree of Alignment
25%
Time-resolved Spectroscopy
25%
Radiation Field
25%
Aligned Molecules
25%
Weak Field
25%
Field Parameters
25%
Polarization Direction
25%
Field Polarization
25%
Laser Control
25%
Time-dependent Quantum Mechanics
25%
Laser-assisted Isotope Separation
25%
Angle Space
25%
Physics
Wave Packet
100%
Angular Distribution
100%
Photodissociation
100%
Laser Pulse
50%
Radiation Distribution
50%
Anisotropy
50%
Quantum Theory
50%
Isotope Separation
50%
Chemistry
Rotational Excitation
100%
Molecular Orientation
100%
Photodissociation
50%
Wave Packet
50%
Laser Pulse
25%
Reaction Dynamics
25%
Isotope Separation
25%
Time-Resolved Spectroscopy
25%
Anisotropy
25%
Quantum Theory
25%
Engineering
Rotational
100%
Molecular Orientation
100%
Angular Distribution
33%
Potential Application
16%
Radiation Field
16%
Polarization Direction
16%
Isotope Separation
16%