Spectroscopic sensing at the quantum limit by active cavity impedance matching

We demonstrate an active cavity impedance matching control technique using radio-frequency amplitude modulation homodyne interferometry, and show it can be used for absorption spectrometry at the quantum limit for both narrow and broadband molecular transitions.

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Hauptverfasser: Chow, J.H., Rabeling, D.S., Wade, A., Littler, I.C.M., Gray, M.B., McClelland, D.E.
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container_start_page 1
container_title
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creator Chow, J.H.
Rabeling, D.S.
Wade, A.
Littler, I.C.M.
Gray, M.B.
McClelland, D.E.
description We demonstrate an active cavity impedance matching control technique using radio-frequency amplitude modulation homodyne interferometry, and show it can be used for absorption spectrometry at the quantum limit for both narrow and broadband molecular transitions.
doi_str_mv 10.1364/CLEO.2009.CMDD2
format Conference Proceeding
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ispartof 2009 Conference on Lasers and Electro-Optics and 2009 Conference on Quantum electronics and Laser Science Conference, 2009, p.1-2
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects (230.5750) Resonators
(300.1030) Absorption Spectroscopy
(300.6380) Modulation spectroscopy
Absorption
Amplitude modulation
Electrochemical impedance spectroscopy
Impedance matching
Impedance measurement
Loss measurement
Mirrors
Optical feedback
Optical interferometry
Optical noise
title Spectroscopic sensing at the quantum limit by active cavity impedance matching
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