期刊
MOLECULAR PHYSICS
卷 111, 期 12-13, 页码 1648-1682出版社
TAYLOR & FRANCIS LTD
DOI: 10.1080/00268976.2013.813595
关键词
molecules in fields; deceleration; focusing; molecular beams; Stark effect; Zeeman effect; AC stark shift; cold molecules; trapping molecules; orientation; adiabatic and non-adiabatic alignment; short laser pulses; combined fields; laser cooling of molecules; many-body physics with dipolar gases; spin models; quantum information processing; ultracold chemistry; molecular collisions; stabilisation of molecules in intense fields; evaporative and sympathetic cooling; entanglement
资金
- NSF
- NSERC of Canada
- Division Of Physics
- Direct For Mathematical & Physical Scien [1125846] Funding Source: National Science Foundation
The goal of the present article is to review the major developments that have led to the current understanding of molecule-field interactions and experimental methods for manipulating molecules with electromagnetic fields. Molecule-field interactions are at the core of several, seemingly distinct areas of molecular physics. This is reflected in the organisation of this article, which includes sections on field control of molecular beams, external field traps for cold molecules, control of molecular orientation and molecular alignment, manipulation of molecules by non-conservative forces, ultracold molecules and ultracold chemistry, controlled many-body phenomena, entanglement of molecules and dipole arrays, and stability of molecular systems in high-frequency super-intense laser fields. The article contains 852 references.
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