Electronic transition spectrum of the tungsten monosulfide (WS) molecule in the near infrared region between 725 nm and 885 nm has been recorded using laser ablation/reaction free-jet expansion and laser induced fluorescence spectroscopy. The WS molecule was produced by reacting laser - ablated tungsten atoms with 1% CS$_{2}$ seeded in argon. Fifteen vibrational bands with resolved rotational structure have been recorded and analyzed, which were organized into seven electronic transition systems. The ground state has been identified to be the X$^{3}$$Sigma$$^{-}$(0$^{+}$) state, and the determined vibrational frequency, $Delta$G$_{1/2}$ and bond length, r$_{0}$, are respectively 556.7 cm$^{-1}$ and 2.0676 AA. In addition, vibrational bands ...
The first pure-rotational spectra of two transition-metal sulfides, copper sulfide (CuS) and mangane...
Atomic properties of S-like W are evaluated through a state-of-the-art method, namely, the multiconf...
Author Institution: Laser Chemistry group, Steacie Institute for Molecular Sciences, National Resear...
Electronic transition spectrum of the tungsten monosulfide (WS) molecule in the near infrared region...
Electronic transition spectrum of the tungsten monosulfide (WS) molecule in the near infrared region...
WK. Metal containing: WK03 - no. P2284Electronic transition spectrum of the tungsten monosulfide (WS...
The (1,0) vibrational band of the [13.10] $\Omega$=1 – $\it{X}$ $^{3}\Sigma^{-}$(0$^{+}$) transition...
Six bands have been recorded at high resolution in absorption in the visible using Intracavity Laser...
The (1,0) vibrational band of the [13.10] $\Omega$=1 – $\it{X}$ $^{3}\Sigma^{-}$(0$^{+}$) transition...
Six bands have been recorded at high resolution in absorption in the visible using Intracavity Laser...
Three bands of tungsten sulfide, WS, in the 14,900 - 16,100 cm$^{-1}$ region have have been recorded...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.3]{Fig1.eps} \end{wrapfigure} Combining laser ab...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.3]{Fig1.eps} \end{wrapfigure} Combining laser ab...
High-resolution vacuum ultraviolet photoabsorption measurements in the wavelength range of 115-320 n...
Author Institution: Guelph-Waterloo Centre for Graduate Work in Chemistry and Biochemistry, Departme...
The first pure-rotational spectra of two transition-metal sulfides, copper sulfide (CuS) and mangane...
Atomic properties of S-like W are evaluated through a state-of-the-art method, namely, the multiconf...
Author Institution: Laser Chemistry group, Steacie Institute for Molecular Sciences, National Resear...
Electronic transition spectrum of the tungsten monosulfide (WS) molecule in the near infrared region...
Electronic transition spectrum of the tungsten monosulfide (WS) molecule in the near infrared region...
WK. Metal containing: WK03 - no. P2284Electronic transition spectrum of the tungsten monosulfide (WS...
The (1,0) vibrational band of the [13.10] $\Omega$=1 – $\it{X}$ $^{3}\Sigma^{-}$(0$^{+}$) transition...
Six bands have been recorded at high resolution in absorption in the visible using Intracavity Laser...
The (1,0) vibrational band of the [13.10] $\Omega$=1 – $\it{X}$ $^{3}\Sigma^{-}$(0$^{+}$) transition...
Six bands have been recorded at high resolution in absorption in the visible using Intracavity Laser...
Three bands of tungsten sulfide, WS, in the 14,900 - 16,100 cm$^{-1}$ region have have been recorded...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.3]{Fig1.eps} \end{wrapfigure} Combining laser ab...
\begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.3]{Fig1.eps} \end{wrapfigure} Combining laser ab...
High-resolution vacuum ultraviolet photoabsorption measurements in the wavelength range of 115-320 n...
Author Institution: Guelph-Waterloo Centre for Graduate Work in Chemistry and Biochemistry, Departme...
The first pure-rotational spectra of two transition-metal sulfides, copper sulfide (CuS) and mangane...
Atomic properties of S-like W are evaluated through a state-of-the-art method, namely, the multiconf...
Author Institution: Laser Chemistry group, Steacie Institute for Molecular Sciences, National Resear...