Autler-Townes effect of autoionization transition at laser separation of lutetium isotopes
D’yachkov A. B.1, Gorkunov A. A.1, Kovalevich S. K.1, Labozin A. V.1, Firsov V. A.1, Fomichev S.V.1, Tsvetkov G. O.1, Panchenko V. Ya.1
1National Research Center “Kurchatov Institute”, Moscow, Russia
Email: alexey_dyachkov@mail.ru, a2gorkunov@mail.ru, kovalevich@bk.ru, labozin@gmail.com, firsov07@list.ru, fomichev_sv@nrcki.ru, Tsvetkov_GO@nrcki.ru, panchenko_vy@nrcki.ru

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The splitting of the transition from a discrete to an autoionization state, used in a three-step photoionization scheme of lutetium 5d6s^2 ^2D3/2-5d6s6p ^4Fo5/2- 5d6s7s ^4D3/2- -(53375 cm-1)o1/2 has been studied. The splitting is proportional to the square root of the intensity, which corresponds to the Autler-Townes effect. Keywords: autoionization state, photoionization, laser isotope separation.
  1. P.T. Greenland, D.N. Travis, D.J.H. Wort. J. Phys. B, 23(17), 2945 (1990). DOI: 10.1088/0953-4075/23/17/007
  2. S.I. Yakovlenko. Quant. Electron., 28(11), 945 (1998). DOI: 10.1070/QE1998v028n11ABEH001364
  3. A.P. Babichev, I.S. Grigoriev, A.I. Grigoriev, A.P. Dorovskii, A.B. D'yachkov, S.K. Kovalevich, V.A. Kochetov, V.A. Kuznetsov, V.P. Labozin, A.V. Matrakhov, S.M. Mironov, S.A. Nikulin, A.V. Pesnya, N.I. Timofeev, V.A. Firsov, G.O. Tsvetkov, G.G. Shatalova. Quant. Electron., 35(10), 879 (2005). DOI: 10.1070/QE2005v035n10ABEH006601
  4. A.B. D'yachkov, A.A. Gorkunov, A.V. Labozin, S.M. Mironov, V.Ya. Panchenko, V.A. Firsov, G.O. Tsvetkov. Quant. Electron., 48(1), 75 (2018). DOI: 10.1070/QEL16493
  5. I.V. Ageeva, A.B. D'yachkov, A.A. Gorkunov, A.V. Labozin, S.M. Mironov, V.Ya. Panchenko, V.A. Firsov, G.O. Tsvetkov, E.G. Tsvetkova. Quant. Electron., 49(9), 832 (2019). DOI: 10.1070/QEL17049
  6. B. Shore. Acta Phys. Slovaca. Rev. Tutorials, 58(3), 243 (2008)
  7. A.B. D'yachkov, A.A. Gorkunov, A.V. Labozin, K.A. Makoveeva, S.M. Mironov, V.A. Firsov, G.O. Tsvetkov, V.Ya. Panchenko. Radiochemistry, 64(1), 49 (2022). DOI: 10.1134/S1066362222010088
  8. J. Bokor, R.R. Freeman, W.E. Cooke. Phys. Rev. Lett., 48(18), 1242 (1982). DOI: 10.1103/PhysRevLett.48.1242
  9. C.K. Rhodes. VUV and XUV Generation with Multiphoton Excitation, in Int. Quant. Electron. Conf., H. Koglnik, Y. Shen, M. Richardson, C. Tang, eds., OSA Technical Digest (Optica Publishing Group, 1984), p. WLL2. https://opg.optica.org/abstract.cfm?URI=IQEC-1984-WLL2
  10. P. Lambropoulos, P. Zoller. Phys. Rev. A, 24(1), 379 (1981). DOI: 10.1103/PhysRevA.24.379
  11. Yu.I. Geller, A.K. Popov. Sov. J. Quantum Electron., 6(5), 606 (1976). DOI: 10.1070/QE1976v006n05ABEH011378
  12. N. Harkema, C. Cariker, E. Lindroth, L. Argenti, A. Sandhu. Phys. Rev. Lett., 127(2), 023202 (2021). DOI: 10.1103/PhysRevLett.127.023202
  13. S.I. Themelis, P. Lambropoulos, M. Meyer. J. Phys. B, 37(21), 4281 (2004). DOI: 10.1088/0953-4075/37/21/005
  14. V. Gruson, L. Barreau, A Jimenez-Galan, F. Risoud, J. Caillat, A. Maquet, B. Carre, F. Lepetit, J.-F. Hergott, T. Ruchon, L. Argenti, R. Tai eb, F. Marti n, P. Salieres. Science, 354(6313), 734 (2016). DOI: 10.1126/science.aah5188
  15. Z.-H. Loh, C.H. Greene, S.R. Leone. Chem. Phys., 350(1-3), 7 (2008). DOI: 10.1016/j.chemphys.2007.11.005
  16. M. Isinger, R.J. Squibb, D. Busto, S. Zhong, A. Harth, D. Kroon, S. Nandi, C.L. Arnold, M. Miranda, J.M. Dahlstrom, E. Lindroth, R. Feifel, M. Gisselbrecht, A. L'Huillier. Science, 358(6365), 893 (2017). DOI: 10.1126/science.aao7043
  17. U. Fano. Phys. Rev., 124(6), 1866 (1961). DOI: 10.1103/PhysRev.124.1866
  18. Yu.I. Heller, A.K. Popov. Phys. Lett. A, 56(6), 453 (1976). DOI: 10.1016/0375-9601(76)90725-8
  19. A.I. Andryushin, A.E. Kazakov, M.V. Fedorov. JETP, 55(1), 53 (1982)
  20. A.I. Andryushin, A.E. Kazakov, M.V. Fedorov. JETP, 61(4), 678 (1985)
  21. N.E. Karapanagioti, O. Faucher, Y.L. Shao, D. Charalambidis, H. Bachau, E. Cormier. Phys. Rev. Lett., 74(13), 2431 (1995). DOI: 10.1103/PhysRevLett.74.2431
  22. O. Faucher, Y.L. Shao, D. Charalambidis, C. Fotakis. Phys. Rev. A, 50(1), 641 (1994). DOI: 10.1103/PhysRevA.50.641
  23. J.A. Fedchak, E.A. Den Hartog, J.E. Lawler, P. Palmeri, P. Quinet, E. Biemont. Astrophys. J., 542(2), 1109 (2000). DOI: 10.1086/317034
  24. A.B. D'yachkov, A.A. Gorkunov, A.V. Labozin, S.M. Mironov, V.Ya. Panchenko, V.A. Firsov, G.O. Tsvetkov. Instr. Exp. Tech., 61(4), 548 (2018). DOI: 10.1134/S0020441218040048
  25. A. Boeglin, B. Fain, S.-H. Lin. J. Chem. Phys., 84(9), 4838 (1986). DOI: 10.1063/1.449973
  26. A.B. D'yachkov, A.A. Gorkunov, A.V. Labozin, S.M. Mironov, V.A. Firsov, G.O. Tsvetkov, V.Ya. Panchenko. Quant. Electron., 52(4), 367 (2022). DOI: 10.1070/QEL18029
  27. A.B. D'yachkov, A.A. Gorkunov, A.V. Labozin, S.M. Mironov, V.A. Firsov, G.O. Tsvetkov, V.Ya. Panchenko. Bull. Lebedev Physics Institute, Vol. 50, Suppl. 2, pp. S187-S193 (2023). DOI: 10.3103/S106833562314004X

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