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Rapid passage signals from a vibrationally excited target molecule: a pump and probe experiment with continuous wave quantum cascade lasers.

Abstract:
Two 5 µm continuous wave quantum cascade lasers are used to perform a counterpropagating pump and probe experiment on a low pressure sample of nitric oxide. The strong pump field excites a fundamental rovibrational transition and the weaker probe field is tuned to the corresponding rotationally resolved hot band transition. When both light fields are in resonance, rapid passage is observed in the hot band absorption lineshape arising from a minimally damped and velocity-selected sample of molecules in the v=1 state. The measured rapid passage signals are well described by a two-level model based on the optical Bloch equations.
Publication status:
Published

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Publisher copy:
10.1364/ol.36.004725

Authors


Journal:
Optics letters More from this journal
Volume:
36
Issue:
24
Pages:
4725-4727
Publication date:
2011-12-01
DOI:
EISSN:
1539-4794
ISSN:
0146-9592


Language:
English
Pubs id:
pubs:236623
UUID:
uuid:0a6c0982-b15d-4925-90f5-e93bbb4a0642
Local pid:
pubs:236623
Source identifiers:
236623
Deposit date:
2012-12-19
ARK identifier:

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