Colloquium : Aligning molecules with strong laser pulses
Коллоквиум: Выравнивание молекул с помощью мощных лазерных импульсов
2003-04-17
SCID: 54.1/tzr8hxa8
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chemical reaction controlhigh harmonic generationintense laser alignmentmolecular alignmentthree-dimensional orientational control
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Abstract (AI)
We review the theoretical and experimental status of intense laser alignment---a field at the interface between intense laser physics and chemical dynamics with potential applications ranging from high harmonic generation and nanoscale processing to stereodynamics and control of chemical reactions. After placing the intense laser approach in context with other alignment techniques, we proceed with a discussion of the physics underlying this technique and a description of methods of observing it in the laboratory. The roles played by the laser frequency, the pulse duration, and the system temperature are illustrated numerically and experimentally. Alignment is extended to three-dimensional orientational control, a method of hindering the rotation about all three axes of polyatomic molecules. We conclude with a discussion of potential applications of intense laser alignment.
Key Findings
1
Alignment can be extended to three-dimensional orientational control by hindering rotation about all three axes of polyatomic molecules.
2
Intense laser alignment is an interdisciplinary technique connecting strong-field laser physics with chemical dynamics and molecular control.
3
Molecular alignment depends strongly on laser frequency, pulse duration, and system temperature, as demonstrated numerically and experimentally.
4
Potential applications include high-harmonic generation, nanoscale processing, stereodynamics, and control of chemical reactions.
5
The review explains the physical mechanisms of intense laser alignment and summarizes laboratory methods for observing alignment.
Research Object
Molecules subjected to intense laser pulses
Research Subject
Laser-induced molecular alignment and three-dimensional orientational control, including their dependence on laser frequency, pulse duration, and system temperature
Publication Details
Publication Date
2003-04-17
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