Evaporative cooling of helium nanodroplets with angular momentum conservation.
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[1] K. Lehmann,et al. Energetics and possible formation and decay mechanisms of vortices in helium nanodroplets , 2003, cond-mat/0306674.
[2] K. Lehmann. Microcanonical thermodynamic properties of helium nanodroplets , 2003, physics/0304073.
[3] M. Havenith,et al. Spontaneous alignment of tetracene molecules in 4He droplets , 2003 .
[4] G. Scoles,et al. Helium nanodroplet isolation rovibrational spectroscopy: Methods and recent results , 2001, physics/0109070.
[5] K. Lehmann. Potential of a neutral impurity in a large 4 He cluster , 1999, physics/9905010.
[6] R. Donnelly,et al. The Observed Properties of Liquid Helium at the Saturated Vapor Pressure , 1998 .
[7] J. Dankovicová. Czech , 1997, Journal of the International Phonetic Association.
[8] Hartmann,et al. Rotationally Resolved Spectroscopy of SF6 in Liquid Helium Clusters: A Molecular Probe of Cluster Temperature. , 1995, Physical review letters.
[9] S. Stringari,et al. Density of states and evaporation rate of helium clusters , 1990 .
[10] W. Hase,et al. Unimolecular reaction dynamics : theory and experiments , 1996 .
[11] P. Roche,et al. New measurement of the superfluid4He surface tension by capillary wave resonances , 1996 .