In a recent paper Peeters et al. published new experimental data on nucleation rates of water in the temperature range of 200–235 K. They reported about a drastic change in the nucleation rate at 207 K. An error in their experimental procedure has been found. The data of Peeters et al. have been reinterpreted. The jump in nucleation rate disappears and the corrected nucleation rate data are in good agreement with data found by Wölk and Strey with a different experimental facility
A Comment on the Letter by G. Gervais, et al., Phys. Rev. Lett. 88, 045505 (2002). The authors of th...
The homogeneous freezing of water is of fundamental importance to a number of fields, including that...
In a recent paper Hentschke presented new results on the vapor-liquid transition in the Stockmayer f...
In a recent paper Peeters et al. published new experimental data on nucleation rates of water in the...
In a recent paper Peeters et al. published new experimental data on nucleation rates of water in the...
The nucleation behavior of supersaturated water vapor in helium is experimentally investigated in th...
Homogeneous nucleation rates of water droplets were measured at a nucleation temperature close to 24...
International audienceWe investigate theoretical, laboratory, and atmospheric evidence for a recentl...
Nucleation of highly supersaturated water vapor in helium, methane, and argon carrier gases at 350 K...
International audienceWe investigate theoretical, laboratory, and atmospheric evidence for a recentl...
Within the scope of joint experiments by the international Nucleation Workshop Group, nucleation exp...
International audienceKim et al. recently measured the structure factor of deeply supercooled water ...
An expansion type cloud chamber was used to measure the nucleation rate of water vapor in an atmosph...
We have investigated creation of 4He crystals from the superfluid phase at the temperature range 2 m...
A double fountain pressure model is used to analyze the recent measurements of Yu and Luo (arXiv2211...
A Comment on the Letter by G. Gervais, et al., Phys. Rev. Lett. 88, 045505 (2002). The authors of th...
The homogeneous freezing of water is of fundamental importance to a number of fields, including that...
In a recent paper Hentschke presented new results on the vapor-liquid transition in the Stockmayer f...
In a recent paper Peeters et al. published new experimental data on nucleation rates of water in the...
In a recent paper Peeters et al. published new experimental data on nucleation rates of water in the...
The nucleation behavior of supersaturated water vapor in helium is experimentally investigated in th...
Homogeneous nucleation rates of water droplets were measured at a nucleation temperature close to 24...
International audienceWe investigate theoretical, laboratory, and atmospheric evidence for a recentl...
Nucleation of highly supersaturated water vapor in helium, methane, and argon carrier gases at 350 K...
International audienceWe investigate theoretical, laboratory, and atmospheric evidence for a recentl...
Within the scope of joint experiments by the international Nucleation Workshop Group, nucleation exp...
International audienceKim et al. recently measured the structure factor of deeply supercooled water ...
An expansion type cloud chamber was used to measure the nucleation rate of water vapor in an atmosph...
We have investigated creation of 4He crystals from the superfluid phase at the temperature range 2 m...
A double fountain pressure model is used to analyze the recent measurements of Yu and Luo (arXiv2211...
A Comment on the Letter by G. Gervais, et al., Phys. Rev. Lett. 88, 045505 (2002). The authors of th...
The homogeneous freezing of water is of fundamental importance to a number of fields, including that...
In a recent paper Hentschke presented new results on the vapor-liquid transition in the Stockmayer f...