Issues

 / 

2024

 / 

January

  

Reviews of topical problems


New approaches to molecular laser separation of uranium isotopes

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

Significant interest in the laser separation of uranium isotopes at the turn of the century stimulated the search for and development of a number of methods and approaches that use both atomic and molecular mechanisms of isotope separation. Effective laser methods for the separation of uranium isotopes are currently under active development in many countries. New approaches to the molecular laser isotope separation (MLIS) of uranium are reviewed. They are based on resonant isotope-selective multiphoton excitation of high vibrational states (2ν3 and 3ν3) of 235UF6 and 238UF6 molecules in gas-dynamically cooled molecular flows by bichromatic IR laser radiation and the subsequent dissociation of the excited molecules by the same laser pulses. The foundations of these approaches are analyzed. The results of experiments on two- and three-photon excitation of SF6 molecules, whose spectroscopic properties are similar to those of UF6 molecules, into the 2ν3 and 3ν3 vibrational states by, respectively, two- and three-frequency radiation of pulsed CO2 lasers are presented and discussed. Specific setups and parameters of resonant two- and three-photon isotope-selective excitation of 235UF6 and 238UF6 molecules into the 2ν3 and 3ν3 vibrational states by bichromatic IR radiation from two pulsed CF4 lasers and two para-H2 lasers with emissions in the 16-μm region are proposed and analyzed. A method is considered for the isotope-selective excitation and dissociation of UF6 molecules in a mixture with a sensitizer (SF6 molecules) under nonequilibrium thermodynamic conditions of a shock wave. Low-energy MLIS methods for uranium based on the proposed approaches are shown to be feasible.

Fulltext pdf (720 KB)
Fulltext is also available at DOI: 10.3367/UFNe.2023.02.039325
Keywords: atoms, molecules, clusters, uranium, molecular and cluster beams, laser spectroscopy, laser-induced selective processes in molecules and clusters, laser separation of uranium isotopes, laser physics
PACS: 07.77.Gx, 28.60.+s, 33.80-b, 36.40.−c, 42.62.−b, 42.62.Fi, 82.50.Bc (all)
DOI: 10.3367/UFNe.2023.02.039325
URL: https://ufn.ru/en/articles/2024/1/d/
2-s2.0-85186577793
2024PhyU...67...44M
Citation: Makarov G N "New approaches to molecular laser separation of uranium isotopes" Phys. Usp. 67 44–54 (2024)
BibTexBibNote ® (generic)BibNote ® (RIS)MedlineRefWorks

Received: 19th, January 2023, revised: 17th, February 2023, 20th, February 2023

Оригинал: Макаров Г Н «Новые подходы к молекулярному лазерному разделению изотопов урана» УФН 194 48–59 (2024); DOI: 10.3367/UFNr.2023.02.039325

References (112) Similar articles (20) ↓

  1. G.N. Makarov “Towards molecular laser separation of uranium isotopes65 531–566 (2022)
  2. G.N. Makarov “New results for laser isotope separation using low-energy methods63 245–268 (2020)
  3. G.N. Makarov “Low energy methods of molecular laser isotope separation58 670–700 (2015)
  4. G.N. Makarov “Selective processes of IR excitation and dissociation of molecules in gasdynamically cooled jets and flows48 37–76 (2005)
  5. G.N. Makarov “Control of the parameters and composition of molecular and cluster beams by means of IR lasers61 617–644 (2018)
  6. G.N. Makarov “Laser IR fragmentation of molecular clusters: the role of channels for energy input and relaxation, influence of surroundings, dynamics of fragmentation60 227–258 (2017)
  7. G.N. Makarov “Kinetic methods for measuring the temperature of clusters and nanoparticles in molecular beams54 351–370 (2011)
  8. G.N. Makarov “Experimental methods for determining the melting temperature and the heat of melting of clusters and nanoparticles53 179–198 (2010)
  9. G.N. Makarov “Laser applications in nanotechnology: nanofabrication using laser ablation and laser nanolithography56 643–682 (2013)
  10. G.N. Makarov “Studies on high-intensity pulsed molecular beams and flows interacting with a solid surface46 889–914 (2003)
  11. G.N. Makarov “The spectroscopy of clusters by intense pulses of VUV radiation from free electron lasers52 461–486 (2009)
  12. G.N. Makarov “Spectroscopy of single molecules and clusters inside helium nanodroplets. Microscopic manifestation of 4He superfluidity47 217–247 (2004)
  13. G.N. Makarov “Cluster temperature. Methods for its measurement and stabilization51 319–353 (2008)
  14. V.S. Letokhov “Selective action of laser radiation on matter21 405–428 (1978)
  15. M.N. Sapozhnikov “Fifty years of selective laser spectroscopy of solids: a history, general principles and applications61 (4) (2018)
  16. N.G. Basov, E.M. Belenov et alNew methods of isotope separation20 209–225 (1977)
  17. A.P. Porfirev, A.A. Kuchmizhak et alPhase singularities and optical vortices in photonics65 789–811 (2022)
  18. P.G. Kryukov “Continuous-wave femtosecond lasers56 849–867 (2013)
  19. A.A. Makarov, A.L. Malinovsky, E.A. Ryabov “Intramolecular vibrational redistribution: from high-resolution spectra to real-time dynamics55 977–1007 (2012)
  20. V.P. Krainov, B.M. Smirnov, M.B. Smirnov “Femtosecond excitation of cluster beams50 907–931 (2007)

The list is formed automatically.

© 1918–2024 Uspekhi Fizicheskikh Nauk
Email: ufn@ufn.ru Editorial office contacts About the journal Terms and conditions