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Nonlinear optical signals and spectroscopy with quantum light

Abstract:

Conventional nonlinear spectroscopy uses classical light to detect matter properties through the variation of its response with frequencies or time delays. Quantum light opens up new avenues for spectroscopy by utilizing parameters of the quantum state of light as novel control knobs and through the variation of photon statistics by coupling to matter. We present an intuitive diagrammatic approach for calculating ultrafast spectroscopy signals induced by quantum light, focusing on application...

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Publication status:
Published
Peer review status:
Peer reviewed
Version:
Publisher version

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Publisher copy:
10.1103/RevModPhys.88.045008

Authors


Dorfman, KED More by this author
More by this author
Department:
Oxford, MPLS, Physics, Atomic & Laser Physics
Mukamel, SM More by this author
Publisher:
American Physical Society Publisher's website
Journal:
Reviews of Modern Physics Journal website
Acceptance date:
2016-07-06
DOI:
ISSN:
1539-0756
Pubs id:
pubs:636973
URN:
uri:30ba1186-f41b-44bd-afce-c52f9fb876a7
UUID:
uuid:30ba1186-f41b-44bd-afce-c52f9fb876a7
Local pid:
pubs:636973
Keywords:

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