We employ a relatively simple experimental technique enabling mechanical-noise free, cavityenhanced spectroscopic measurements of an atomic transition and its hyperfine structure. We demonstrate this technique with the 532 nm frequency doubled output from a Nd:YAG laser and an iodine vapour cell. The resulting cavity-enhanced, noise-cancelled, iodine hyperfine error signal is used as a frequency reference with which we stabilise the frequency of the 1064nm Nd:YAG laser. Preliminary frequency stabilisation results are then presented
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
Frequency-doubled Nd : YAG lasers have been frequency stabilized against the hyperfine structure com...
We present an experimental technique enabling mechanical-noise free, cavity-enhanced frequency measu...
We present an experimental technique enabling mechanical-noise free, cavity-enhanced frequency meas...
We present a relatively simple experimental technique enabling mechanical-noise free, cavity-enhance...
I demonstrate a technique for frequency stabilization and modulation transfer spectroscopy using a l...
I demonstrate a technique for frequency stabilization and modulation transfer spectroscopy using a l...
We implemented an optical frequency standard based on noise-immune cavity-enhanced optical heterodyn...
We implemented an optical frequency standard based on noise-immune cavity-enhanced optical heterodyn...
Frequency modulation spectroscopy is used to frequency stabilize an Ar+ laser at 515 nm with respect...
$^{a}$M. de Labachelerie, K. Nakagawa, and M. Ohtsu, Opt. Lett. 19, 840 (1994) $^{b}$J. Ye, L.-S. Ma...
$^{a}$M. de Labachelerie, K. Nakagawa, and M. Ohtsu, Opt. Lett. 19, 840 (1994) $^{b}$J. Ye, L.-S. Ma...
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
We report absolute frequencymeasurements of the a1, a10, and a15 hyperfine components of molecular i...
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
Frequency-doubled Nd : YAG lasers have been frequency stabilized against the hyperfine structure com...
We present an experimental technique enabling mechanical-noise free, cavity-enhanced frequency measu...
We present an experimental technique enabling mechanical-noise free, cavity-enhanced frequency meas...
We present a relatively simple experimental technique enabling mechanical-noise free, cavity-enhance...
I demonstrate a technique for frequency stabilization and modulation transfer spectroscopy using a l...
I demonstrate a technique for frequency stabilization and modulation transfer spectroscopy using a l...
We implemented an optical frequency standard based on noise-immune cavity-enhanced optical heterodyn...
We implemented an optical frequency standard based on noise-immune cavity-enhanced optical heterodyn...
Frequency modulation spectroscopy is used to frequency stabilize an Ar+ laser at 515 nm with respect...
$^{a}$M. de Labachelerie, K. Nakagawa, and M. Ohtsu, Opt. Lett. 19, 840 (1994) $^{b}$J. Ye, L.-S. Ma...
$^{a}$M. de Labachelerie, K. Nakagawa, and M. Ohtsu, Opt. Lett. 19, 840 (1994) $^{b}$J. Ye, L.-S. Ma...
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
We report absolute frequencymeasurements of the a1, a10, and a15 hyperfine components of molecular i...
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
We demonstrate a spectroscopy method that can be applied in an atomic beam, light-pressure-induced s...
Frequency-doubled Nd : YAG lasers have been frequency stabilized against the hyperfine structure com...