PACS numbers

42.50.Ct Quantum description of interaction of light and matter; related experiments 42.50.Gy Effects of atomic coherence on propagation, absorption, and amplification of light; electromagnetically induced transparency and absorption 42.55.Ks Chemical lasers 42.55.Px Semiconductor lasers; laser diodes 52.50.Jm Plasma production and heating by laser beams (laser-foil, laser-cluster, etc.)
  1. V.V. Dudelev, E.D. Cherotchenko et alQuantum cascade lasers for the 8-μm spectral range: technology, design, and analysis67 92–98 (2024)
    42.55.Px, 42.60.−v, 78.67.Pt (all)
  2. A.V. Taichenachev, V.I. Yudin, S.N. Bagayev “Ultraprecision optical frequency standards using ultracold atoms: state of the art and prospects59 184–195 (2016)
    42.50.Gy, 42.62.Fi, 42.62.Eh (all)
  3. V.Yu. Bychenkov, A.V. Brantov et alLaser acceleration of ions: recent results and prospects for applications58 71–81 (2015)
    52.38.Kd, 52.50.Jm, 52.65.Rr, 87.57.uh (all)
  4. R.A. Ganeev “High order harmonics generation in laser surface ablation: current trends56 772–800 (2013)
    42.65.Ky, 42.79.Nv, 52.50.Jm (all)
  5. Modern problems in the physical sciences (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 23 November 2011)55 721–738 (2012)
    01.10.Fv, 02.70.−c, 05.10.−a, 05.50.+q, 14.60.St, 23.40.−s, 31.10.+z, 42.55.Lt, 42.60.Lh, 52.50.Jm (all)
  6. A.A. Ionin “High-power IR- and UV-laser systems and their applications55 721–728 (2012)
    42.55.Lt, 42.60.Lh, 52.50.Jm (all)
  7. M.T. Zharaspaev, D.S. Kim, R.E. Zhumagulova “A facility for the out-of-pile heating of nuclear fuel samples to above 2000 °C55 603–606 (2012)
    28.41.Bm, 52.50.Jm, 88.40.me (all)
  8. Yu.M. Popov “The early history of the injection laser54 96–100 (2011)
    01.65.+g, 42.55.Px, 42.60.−v (all)
  9. V.L. Velichansky, M.A. Gubin “Laser frequency standards at the P N Lebedev Physical Institute52 1153–1158 (2009)
    01.30.Bb, 06.30.Ft, 42.55.Px, 42.62.Eh (all)
  10. V.S. Zapasskii “On electromagnetically induced transparency in the degenerate Λ-scheme52 179–181 (2009)
    42.25.Hz, 42.50.Gy, 42.65.−k (all)
  11. E.B. Aleksandrov, V.S. Zapasskii “Chasing ’slow light’49 1067–1075 (2006)
    42.25.Bs, 42.50.Gy, 42.50.Md (all)
  12. A.V. Andriyash, P.A. Loboda et alLasers and high energy density physics at the All-Russian Research Institute of Technical Physics (VNIITF)49 1084–1092 (2006)
    01.10.Fv, 42.62.−b, 52.38.−r, 52.50.Jm (all)
  13. E.B. Aleksandrov, V.S. Zapasskii “A fairy tale of stopped light47 1033–1036 (2004)
    42.25.Ja, 42.50.Gy (all)
  14. A.A. Belyanin, D. Deppe et alNew semiconductor laser designs and the exploratory investigation of the terahertz frequency range46 986–992 (2003)
    42.55.Px, 42.60.−v (all)
  15. A.A. Andronov, M.N. Drozdov et alTransport in weak barrier superlattices and the problem of the terahertz Bloch oscillator46 755–758 (2003)
    42.55.Px, 71.70.Ej, 73.63.−b (all)
  16. B.M. Smirnov “Generation of cluster beams46 589–628 (2003)
    36.40.Sx, 36.40.Wa, 52.50.Jm, 61.46.+w (all)
  17. E.B. Aleksandrov, I.V. Sokolov et alScientific session of the Division of General Physics and Astronomy of the Russian Academy of Sciences (25 April 2001)44 1199–1199 (2001)
    06.20.−f, 07.55.Ge, 03.67.−a, 32.70.Fw, 32.70.Jz, 42.25.Hz, 42.25.Gy, 42.50.Gy (all)
  18. T.A. Vartanyan “Action of optical radiation on the boundary of a rarefied resonant medium.New possibilities and problems44 1203–1205 (2001)
    32.70.Fw, 32.70.Jz, 42.25.Hz, 42.25.Gy, 42.50.Gy (all)
  19. V.M. Ustinov, N.A. Maleev et alVertical-cavity emitting devices with quantum-dot structures44 813–815 (2001)
    42.55.Px, 68.55.+g, 85.30.Vw
  20. V.M. Ustinov, N.A. Maleev et alScientific session of the Division of General Physics and Astronomy of the Russian Academy of Sciences (31 January, 2001)44 813–815 (2001)
    01.10.Fv, 42.55.Px, 68.55.+g, 85.30.Vw (all)
  21. I.L. Krestnikov, V.V. Lundin et alHeterostructures based on nitrides of group III elements: technical processes, properties, and light-emitting devices44 815–816 (2001)
    42.55.Px, 85.30.Vw
  22. S.V. Sazonov “Superluminal electromagnetic solitons in nonequilibrium media44 631–644 (2001)
    42.50.Gy, 42.55. -f, 42.65.−k, 42.65.Tg (all)
  23. V.L. Vaks, V.V. Mityugov “On relaxation times42 1065–1066 (1999)
    02.90.+p, 32.70.−n, 33.70.−w, 42.50.Ct (all)
  24. L.I. Men’shikov “Superradiance and related phenomena42 107 (1999)
    42.50.−p, 42.50.Gy, 42.65.−k, 52.35.−g (all)
  25. A.N. Oraevskii “Superluminal waves in amplifying media41 1199–1209 (1998)
    42.50.Gy, 42.55.−f, 42.65.−k (all)
  26. H. Walther “One-atom maser and other experiments on cavity quantum electrodynamics39 727–743 (1996)
    42.50.Ct, 42.50.Dv, 42.52.+x (all)
  27. A.B. Brailovskii, V.L. Vaks, V.V. Mityugov “Quantum models of relaxation39 745–750 (1996)
    05.30.−d, 05.70.Ln, 34.10.+x, 42.50.Ct (all)
  28. V.P. Bykov, A.V. Gerasimov, V.O. Turin “Coulomb disintegration of weak electron fluxes and the photocounts38 911–921 (1995)
    79.60.Bm, 42.50.Ct, 07.60.Dq, 85.60.Gz (all)
  29. B.D. Agap’ev, M.B. Gornyi et alErratum: Coherent population trapping in quantum systems [Phys. Usp. 36, 763-793, (September 1993)]36 (11) 1086–1086 (1993)
    32.80.Pj, 42.50.Ct, 32.80.Qk, 32.10.Fn, 39.30.+w (all)
  30. B.D. Agap’ev, M.B. Gornyi et alCoherent population trapping in quantum systems36 (9) 763–793 (1993)
    32.80.Pj, 42.50.Ct, 32.80.Qk, 32.10.Fn, 39.30.+w (all)
  31. A.F. Andreev, B.B. Kadomtsev et alNikolai Gennadievich Basov (on his seventieth birthday)36 (1) 32–33 (1993)
    01.60.+q, 01.10.Cr, 42.50.Gy, 42.55.Px, 42.60.By, 52.57.−z (all)
  32. V.T. Tikhonchuk “Present state of research into the interaction between powerful laser radiation and high-temperature plasmas34 (10) 903–909 (1991)
    52.38.Dx, 52.38.Bv, 52.38.Hb, 52.50.Jm (all)
  33. A.V. Andreev “Optical superradiance: new ideas and new experiments33 (12) 997–1020 (1990)
    42.50.Fx, 42.50.Gy, 42.65.Tg, 32.80.Qk (all)
  34. D.N. Klyshko “The Einstein-Podolsky-Rosen paradox for energy-time variables32 555–563 (1989)
    03.65.Ud, 42.50.Ar, 42.50.Ct, 42.50.Md (all)
  35. A.M. Leontovich, A.M. Mozharovskii, E.D. Trifonov “Coherent amplification, reflection, and induced superradiance in activated media.29 1058–1059 (1986)
    42.50.Gy, 42.50.Fx, 42.50.Ar, 42.50.Md, 42.50.Hz (all)
  36. N.G. Basov, P.G. Eliseev, Yu.M. Popov “Semiconductor lasers29 20–30 (1986)
    42.55.Px, 42.60.By, 42.70.Hj, 42.70.Nq (all)
  37. S.I. Anisimov, A.M. Prokhorov, V.E. Fortov “Application of high-power lasers to study matter at ultrahigh pressures27 181–205 (1984)
    52.50.Jm, 52.35.Tc, 52.35.Py, 52.70.−m (all)
  38. A.V. Eletskii “Processes in chemical lasers24 475–495 (1981)
    42.55.Ks
  39. A.M. Prokhorov, S.I. Anisimov, P.P. Pashinin “Laser thermonuclear fusion19 547–560 (1976)
    28.50.Re, 52.50.Jm, 42.60.Qm
  40. V.A. Bushuev, R.N. Kuz’min “X-ray lasers18 942–949 (1975)
    42.55.Vc, 42.60.Jf, 52.50.Jm (all)
  41. I.A. Poluektov, Yu.M. Popov, V.S. Roitberg “Self-induced transparency effect18 673–690 (1975)
    42.50.Md, 42.50.Hz, 42.50.Ct (all)
  42. V.S. Letokhov, V.P. Chebotaev “Resonance phenomena in saturation of absorption by laser radiation17 467–491 (1975)
    42.50.Gy, 42.60.Da, 42.62.Fi (all)
  43. F.V. Bunkin, A.E. Kazakov, M.V. Fedorov “Errata to the article by F. V. Bunkin et al., ’Interaction of Intense Optical Radiation with Free Electrons (Nonrelativistic Case),’ Vol. 15, No. 4, p. 416.16 585–585 (1974)
    52.50.Jm, 52.25.Os (all)
  44. F.V. Bunkin, A.E. Kazakov, M.V. Fedorov “Interaction of intense optical radiation with free electrons (nonrelativistic case)15 416–435 (1973)
    52.50.Jm, 52.25.Os (all)
  45. V.E. Zakharov “Theory of Self-Focusing15 518–519 (1973)
    42.65.Jx, 42.50.Gy, 42.65.Wi, 42.65.Hw (all)
  46. V.I. Talanov “Certain Problems in the Theory of Self-Focusing15 521–522 (1973)
    42.65.Jx, 42.65.Hw, 42.50.Gy (all)
  47. A.I. Isakov, O.N. Krokhin et alNikolai Gennadievich Basov (on his fiftieth birthday)16 165–166 (1973)
    42.50.Gy, 42.50.Ct, 52.50.Jm, 42.55.Px, 42.55.Ks (all)
  48. Yu.L. Klimontovich “Problems of statistical theory of interaction of atoms with radiation13 480–494 (1971)
    42.50.Ct, 03.65.Yz, 42.55.Lt, 42.60.Jf (all)
  49. O.N. Krokhin “Use of Lasers for Plasma Heating14 362–362 (1971)
    52.50.Jm, 52.57.−z, 42.60.Lh (all)
  50. B.Ya. Zel’dovich, I.I. Sobel’man “Stimulated light scattering induced by absorption13 307–317 (1970)
    42.65.Es, 42.50.Nn, 42.50.Lc, 42.50.Gy, 42.50.Hz (all)
  51. V.L. Tal’roze “Chemical Lasers13 409–409 (1970)
    42.55.Ks, 42.60.Jf, 42.65.Re (all)
  52. V.V. Fadeev “Ultraviolet Lasers Using Organic Scintillators13 409–410 (1970)
    42.55.Ks, 42.55.Rz, 42.70.Mp, 42.70.Hj, 42.70.Jk, 42.72.Bj (all)
  53. M.S. Dzhidzhoev, V.T. Platonenko, R.V. Khokhlov “CHEMICAL LASERS13 247–268 (1970)
    42.55.Ks, 42.60.Jf, 42.60.Lh, 33.15.Mt (all)
  54. K.N. Drabovich “Resonance interaction of short light pulses with matter11 534–537 (1969)
    42.65.Re, 42.50.Ct, 42.50.Md (all)
  55. F. Gerasimov, Yu.M. Kagan et alSERGEĬ ÉDUARDOVICH FRISH (on his 70th Birthday)12 438–439 (1969)
    01.60.+q, 07.60.−j, 42.50.−p, 52.50.Jm, 51.70.+f, 32.30.−r (all)
  56. N.G. Basov, V.V. Nikitin, A.S. Semenov “Dynamics of semiconductor injection lasers12 219–240 (1969)
    42.55.Px, 42.60.Fc, 42.60.Jf, 42.60.By, 42.60.Da (all)
  57. V.A. Kizel’ “Modern status of the theory of light reflection10 485–508 (1968)
    42.25.Gy, 42.25.Ja, 42.50.Ct, 42.65.−k, 02.10.Ud (all)
  58. S.A. Akhmanov, R.V. Khokhlov “New developments in non-linear optics11 394–402 (1968)
    01.30.Cc, 42.65.−k, 42.70.Nq, 42.50.Ct, 42.55.−f (all)
  59. P.P. Feofilov “The contribution of academician S. I. Vavilov to the study of light10 1–5 (1967)
    01.60.+q, 42.50.Ct, 42.50.Fx (all)
  60. Yu.P. Raizer “Breakdown and heating of gases under the influence of a laser beam8 650–673 (1966)
    51.50.+v, 52.50.Jm, 52.80.Mg (all)
  61. S.A. Akhmanov, R.V. Khokhlov “Parametric amplifiers and generators of light9 210–222 (1966)
    42.65.Yj, 42.60.Da, 42.50.Gy (all)
  62. I.I. Metelskii, V.F. Kovalev, V.Yu. Bychenkov “Relativistically nonlinear resonant absorption and harmonic generation of electromagnetic radiation in an inhomogeneous plasma”, accepted
    52.40.Db, 52.35.Hr, 52.38.−r, 42.65.Ky, 52.35.Fp, 52.50.Jm, 52.25.Os, 52.35.−g, 52.30.−q, 52.57.−z (all)
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