A method of measuring double resonant two-photon signal and background from a single cavity ring-down decay is introduced. This is achieved by modulating the double resonance loss via one of the light sources exciting the transition. The noise performance of the method is characterized theoretically and experimentally. The addition of a new parameter to the fitting function introduces a minor noise increase due to parameter correlation. However, the concurrent recording of the background can extend the stable measurement time. Alternatively, the method allows a faster measurement speed, while still recording the background, which is often advantageous in double resonance measurements. Finally, the method is insensitive to changes in the cav...
The aim of this study is to evaluate cavity ringdown spectroscopy (CRDS) as an ultra-sensitive techn...
We have developed a new ring-down technique that does not require a shutter to turn a probe laser on...
Author Institution: Chemical Science and Technology Laboratory, National Institute of Standards and ...
A method of measuring double resonant two-photon signal and background from a single cavity ring-dow...
As recently discussed by K.K. Lehmann in a theoretical analysis of two-photon absorption (TPA) [1], ...
Some of the most sensitive absorption measurements to date are based on schemes that use a resonant ...
We present an ac heterodyne technique in cavity ringdown spectroscopy that permits 1×10−10 absorptio...
We report a proof-of-principle demonstration of intracavity pump-probe, cavity ringdown (CRD) detect...
The ultimate precision of highly sensitive cavity-enhanced spectroscopic measurements is often limit...
In this thesis, we demonstrate, through simulation and experiment, new digital signal processing tec...
Light propagation in a passively decaying optical resonator occurs exclusively at the cavity resonan...
Author Institution: Princeton University, Princeton, NJ 08544Cavity ring down spectroscopy (a.k.a. r...
International audienceWe present a scheme of optical feedback cavity-enhanced absorption spectroscop...
Abstract: A novel approach to cavity ring-down spectroscopy with the sample gas in saturated-absorpt...
Author Institution: Universit\'{e} J. Fourier/CNRS Grenoble Laboratoire de Spectrom\'{e}trie Physiqu...
The aim of this study is to evaluate cavity ringdown spectroscopy (CRDS) as an ultra-sensitive techn...
We have developed a new ring-down technique that does not require a shutter to turn a probe laser on...
Author Institution: Chemical Science and Technology Laboratory, National Institute of Standards and ...
A method of measuring double resonant two-photon signal and background from a single cavity ring-dow...
As recently discussed by K.K. Lehmann in a theoretical analysis of two-photon absorption (TPA) [1], ...
Some of the most sensitive absorption measurements to date are based on schemes that use a resonant ...
We present an ac heterodyne technique in cavity ringdown spectroscopy that permits 1×10−10 absorptio...
We report a proof-of-principle demonstration of intracavity pump-probe, cavity ringdown (CRD) detect...
The ultimate precision of highly sensitive cavity-enhanced spectroscopic measurements is often limit...
In this thesis, we demonstrate, through simulation and experiment, new digital signal processing tec...
Light propagation in a passively decaying optical resonator occurs exclusively at the cavity resonan...
Author Institution: Princeton University, Princeton, NJ 08544Cavity ring down spectroscopy (a.k.a. r...
International audienceWe present a scheme of optical feedback cavity-enhanced absorption spectroscop...
Abstract: A novel approach to cavity ring-down spectroscopy with the sample gas in saturated-absorpt...
Author Institution: Universit\'{e} J. Fourier/CNRS Grenoble Laboratoire de Spectrom\'{e}trie Physiqu...
The aim of this study is to evaluate cavity ringdown spectroscopy (CRDS) as an ultra-sensitive techn...
We have developed a new ring-down technique that does not require a shutter to turn a probe laser on...
Author Institution: Chemical Science and Technology Laboratory, National Institute of Standards and ...