Dual-comb spectroscopy holds the promise as real-time, high-resolution spectroscopy tools. It had been applied to measure the spectral features of a wide variety of samples. With the help of nonlinear optical spectral broadening schemes, gases with absorption in different spectral windows can be monitored using the dual-comb method\footnote{K. Cossel, et al., Optica, 4, 724 (2017).}. Among them, methane is one that attracts much attention due to its important role in the greenhouse effect. Dual-comb spectroscopy based on a single mode-locked fiber laser has attracted more attention due to its simplification compared to the dual lasers systems. High-resolution optical spectroscopy had been demonstrated around the Erbium (Er) gain window by m...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.3]{Graph12.eps} \end{wrapfigure} Single-cav...
We present here an experimental demonstration of dual-comb spectroscopy performed around 2 µm, with ...
\begin{wrapfigure}{p}{0pt} \includegraphics[scale=0.24]{Graph01.eps} \end{wrapfigure} We demon...
Dual-comb spectroscopy holds the promise as real-time, high-resolution spectroscopy tools. It had be...
Dual-comb spectroscopy is arguably the natural successor to FTIR. Based on the interference between ...
The output of a laser frequency comb is composed of 100,000+ perfectly spaced, discrete wavelength e...
Dual terahertz (THz) comb spectroscopy enables high spectral resolution, high spectral accuracy, and...
Author Institution: Laser and Optics Research Center, U.S. Air Force Academy, Suite 2A31, 2354 Fairc...
The spectrum of a laser frequency comb consists of several hundred thousand equally spaced lines ove...
International audienceOptical-optical double resonance (OODR) spectroscopy is a powerful tool for th...
begin{wrapfigure}{4}{0pt} _x000d_ includegraphics[scale=0.35]{Setup03.eps}_x000d_ end{wrapfigure} _x...
We present gapless, high-resolution absorption and dispersion spectra obtained with quantum cascade ...
In this study, we demonstrated an improvement in the detection sensitivity of dual-comb spectroscopy...
Author Institution: Max Planck Institut fur Quantenoptik, Hans-Kopfermann-Str. 1, 85748 Garching, Ge...
Author Institution: Max Planck Institut fur Quantenoptik, Hans-Kopfermann-Str. 1, 85748 Garching, Ge...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.3]{Graph12.eps} \end{wrapfigure} Single-cav...
We present here an experimental demonstration of dual-comb spectroscopy performed around 2 µm, with ...
\begin{wrapfigure}{p}{0pt} \includegraphics[scale=0.24]{Graph01.eps} \end{wrapfigure} We demon...
Dual-comb spectroscopy holds the promise as real-time, high-resolution spectroscopy tools. It had be...
Dual-comb spectroscopy is arguably the natural successor to FTIR. Based on the interference between ...
The output of a laser frequency comb is composed of 100,000+ perfectly spaced, discrete wavelength e...
Dual terahertz (THz) comb spectroscopy enables high spectral resolution, high spectral accuracy, and...
Author Institution: Laser and Optics Research Center, U.S. Air Force Academy, Suite 2A31, 2354 Fairc...
The spectrum of a laser frequency comb consists of several hundred thousand equally spaced lines ove...
International audienceOptical-optical double resonance (OODR) spectroscopy is a powerful tool for th...
begin{wrapfigure}{4}{0pt} _x000d_ includegraphics[scale=0.35]{Setup03.eps}_x000d_ end{wrapfigure} _x...
We present gapless, high-resolution absorption and dispersion spectra obtained with quantum cascade ...
In this study, we demonstrated an improvement in the detection sensitivity of dual-comb spectroscopy...
Author Institution: Max Planck Institut fur Quantenoptik, Hans-Kopfermann-Str. 1, 85748 Garching, Ge...
Author Institution: Max Planck Institut fur Quantenoptik, Hans-Kopfermann-Str. 1, 85748 Garching, Ge...
\begin{wrapfigure}{r}{0pt} \includegraphics[scale=0.3]{Graph12.eps} \end{wrapfigure} Single-cav...
We present here an experimental demonstration of dual-comb spectroscopy performed around 2 µm, with ...
\begin{wrapfigure}{p}{0pt} \includegraphics[scale=0.24]{Graph01.eps} \end{wrapfigure} We demon...