PACS numbers

37.10.De Atom cooling methods
  1. D.I. Provorchenko, D.O. Tregubov et alLaser cooling of thulium atoms to ground vibrational state in an optical latticePhys. Usp. 67 (11) (2024)
    06.20.−f, 37.10.De, 37.10.Jk (all)
  2. A.E. Afanasiev, P.I. Skakunenko et alAtom chipPhys. Usp. 67 (11) (2024)
    07.07.Df, 37.10.De, 37.10.Gh (all)
  3. T.A. Isaev “Direct laser cooling of moleculesPhys. Usp. 63 289–302 (2020)
    31.10.+z, 33.20.−t, 37.10.De (all)
  4. R. Onofrio “Cooling and thermometry of atomic Fermi gasesPhys. Usp. 59 1129–1153 (2016)
    03.75.Ss, 05.30.Fk, 07.20.Dt, 37.10.De, 67.60.Bc (all)
  5. G.A. Vishnyakova, A.A. Golovizin et alUltracold lanthanides: from optical clocks to quantum simulatorsPhys. Usp. 59 168–173 (2016)
    32.30.Jc, 37.10.De, 37.10.Gh (all)
  6. N.N. Kolachevsky, K.Yu. Khabarova “Precision laser spectroscopy in fundamental studiesPhys. Usp. 57 1230–1238 (2014)
    32.30.Jc, 37.10.De, 37.10.Gh (all)
  7. Celebrating 50 years of the laser (Scientific session of the General Meeting of the Physical Sciences Division of the Russian Academy of Sciences, 13 December 2010)Phys. Usp. 54 837–870 (2011)
    01.10.Fv, 03.75.−b, 07.57.−c, 32.30.Jc, 37.10.−x, 37.10.De, 37.10.Gh, 42.62.−b, 42.65.−k, 42.70.−a, 42.82.−m, 67.85.−d, 78.67.−n, 85.40.−e, 84.40.Ik (all)
  8. N.N. Kolachevsky “Laser cooling of rare-earth atoms and precision measurementsPhys. Usp. 54 863–870 (2011)
    37.10.De, 37.10.Gh, 32.30.Jc (all)
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