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On the possibility of selecting molecules embedded in superfluid helium nanodroplets (clusters)


Institute of Spectroscopy, Russian Academy of Sciences, ul. Fizicheskaya 5, Troitsk, Moscow, 108840, Russian Federation

Methods for producing beams of nanometer-sized superfluid helium droplets and techniques for embedding single molecules and clusters in them open up many possibilities for spectroscopy, as well as providing insight into many physical and chemical processes occurring on the atomic and molecular level at extremely low temperatures (T ≤ 0.4 K). In this paper, results of investigations into the possibility of selecting molecules embedded in superfluid helium nanodroplets (clusters) are reviewed. The method proposed starts with the selective vibrational excitation of cluster-embedded molecules by intense IR laser radiation (which greatly reduces the size of the excited clusters), followed by size-separating the clusters via scattering the cluster beam from a crossing molecular (atomic) beam. It is shown that molecules of a particular isotope (component) composition can be selected with this method. The advantages and disadvantages of the method are discussed. Methods for creating and doping helium nanodroplets and some other examples of their applications are also outlined.

Fulltext is available at IOP
PACS: 28.60.+s, 33.80.−b, 36.40.−c, 42.62.Fi (all)
DOI: 10.1070/PU2006v049n11ABEH005941
URL: https://ufn.ru/en/articles/2006/11/b/
Citation: Makarov G N "On the possibility of selecting molecules embedded in superfluid helium nanodroplets (clusters)" Phys. Usp. 49 1131–1150 (2006)
BibTexBibNote ® (generic) BibNote ® (RIS)MedlineRefWorks
TY JOUR
TI On the possibility of selecting molecules embedded in superfluid helium nanodroplets (clusters)
AU Makarov, G. N.
PB Physics-Uspekhi
PY 2006
JO Physics-Uspekhi
JF Physics-Uspekhi
JA Phys. Usp.
VL 49
IS 11
SP 1131-1150
UR https://ufn.ru/en/articles/2006/11/b/
ER https://doi.org/10.1070/PU2006v049n11ABEH005941

Оригинал: Макаров Г Н «О возможности селекции молекул, внедренных в нанокапельки (кластеры) сверхтекучего гелия» УФН 176 1155–1176 (2006); DOI: 10.3367/UFNr.0176.200611b.1155

References (181) Cited by (20)

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