An optically pumped molecular laser system utilizing a transverse or zig-zag pumping geometry of the far-infrared (FIR) laser medium has enabled the reinvestigation of the CH 2 DOH, CHD 2 OH, and CH 3 18 OH isotopic forms of methanol for wavelengths \u3e 100 μm. With this system, 28 FIR laser emissions have been discovered with wavelengths ranging from 117.2 to 744.7 μm. Along with the wavelength, each laser emission is reported with its optimal operating pressure, polarization with respect to the CO 2 pump laser, and relative intensity. Three of the laser emissions generated by CH 3 18 OH support the spectroscopic assignments of FIR laser transitions originally proposed through combination-difference loops. A fourth CH 3 18 OH laser emissi...
For nearly 45 years, the optically pumped molecular laser has been the most prolific source of coher...
The first laser action produced by the partially deuterated isotopic form of methanol, 13CHD2OH, has...
Through the optical pump technique we have reinvestigated the CHD2OH molecule as a source of far-inf...
An optically pumped molecular laser system utilizing a transverse or zig-zag pumping geometry of the...
The CH 3 18 OH isotopic form of methanol has been reinvestigated as a source of far-infrared (FIR) r...
The CH 3 17 OH isotopic form of methanol has been investigated as a far-infrared laser medium for th...
Methanol (CH3OH) is considered today one of the most important active media for the generation of la...
Author Institution: CEMAID and Physics Department, University of New Brunswick; Department of Physic...
Author Institution: National Institute of the Standards and Technology, Gaithersburg, MD 20899 U.S.A...
We have reinvestigated CUD2OH and CH2DOH methanol isotopomers as sources of far-infrared laser radia...
The methanol isotopic species CH3OD has also proved to be an efficient and powerful medium to genera...
Observations of far-infrared (FIR) laser emission and assignments of FIR laser lines have been repor...
Twenty-seven new FIR, far-infrared, laser lines from the isotopomers of methanol: '*CD30H, &quo...
The technique of optical pumping in polar molecules is the most efficient for Far-Infrared (FIR) las...
The technique of optical pumping in polar molecules is the most efficient for Far-Infrared (FIR) las...
For nearly 45 years, the optically pumped molecular laser has been the most prolific source of coher...
The first laser action produced by the partially deuterated isotopic form of methanol, 13CHD2OH, has...
Through the optical pump technique we have reinvestigated the CHD2OH molecule as a source of far-inf...
An optically pumped molecular laser system utilizing a transverse or zig-zag pumping geometry of the...
The CH 3 18 OH isotopic form of methanol has been reinvestigated as a source of far-infrared (FIR) r...
The CH 3 17 OH isotopic form of methanol has been investigated as a far-infrared laser medium for th...
Methanol (CH3OH) is considered today one of the most important active media for the generation of la...
Author Institution: CEMAID and Physics Department, University of New Brunswick; Department of Physic...
Author Institution: National Institute of the Standards and Technology, Gaithersburg, MD 20899 U.S.A...
We have reinvestigated CUD2OH and CH2DOH methanol isotopomers as sources of far-infrared laser radia...
The methanol isotopic species CH3OD has also proved to be an efficient and powerful medium to genera...
Observations of far-infrared (FIR) laser emission and assignments of FIR laser lines have been repor...
Twenty-seven new FIR, far-infrared, laser lines from the isotopomers of methanol: '*CD30H, &quo...
The technique of optical pumping in polar molecules is the most efficient for Far-Infrared (FIR) las...
The technique of optical pumping in polar molecules is the most efficient for Far-Infrared (FIR) las...
For nearly 45 years, the optically pumped molecular laser has been the most prolific source of coher...
The first laser action produced by the partially deuterated isotopic form of methanol, 13CHD2OH, has...
Through the optical pump technique we have reinvestigated the CHD2OH molecule as a source of far-inf...