Search Results - (Author, Cooperation:N. Melikechi)
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Gomez Gomez ; J. Gomez-Elvira ; B. Gondet ; S. Gordon ; S. Gorevan ; J. Grant ; J. Griffes ; D. Grinspoon ; J. Grotzinger ; P. Guillemot ; J. Guo ; S. Gupta ; S. Guzewich ; R. Haberle ; D. Halleaux ; B. Hallet ; V. Hamilton ; C. Hardgrove ; D. Harker ; D. Harpold ; A. M. Harri ; K. Harshman ; D. Hassler ; H. Haukka ; A. Hayes ; K. Herkenhoff ; P. Herrera ; S. Hettrich ; E. Heydari ; V. Hipkin ; T. Hoehler ; J. Hollingsworth ; J. Hudgins ; W. Huntress ; J. Hurowitz ; S. Hviid ; K. Iagnemma ; S. Indyk ; G. Israel ; R. Jackson ; S. Jacob ; B. Jakosky ; E. Jensen ; J. K. Jensen ; J. Johnson ; M. Johnson ; S. Johnstone ; A. Jones ; J. Joseph ; I. Jun ; L. Kah ; H. Kahanpaa ; M. Kahre ; N. Karpushkina ; W. Kasprzak ; J. Kauhanen ; L. Keely ; O. Kemppinen ; D. Keymeulen ; M. H. Kim ; K. Kinch ; P. King ; L. Kirkland ; G. Kocurek ; A. Koefoed ; J. Kohler ; O. Kortmann ; A. Kozyrev ; J. Krezoski ; D. Krysak ; R. Kuzmin ; J. L. Lacour ; V. Lafaille ; Y. Langevin ; N. Lanza ; J. Lasue ; S. 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Zeitlin ; R. Zimdar ; M. P. Zorzano Mier
American Association for the Advancement of Science (AAAS)
Published 2013Staff ViewPublication Date: 2013-07-23Publisher: American Association for the Advancement of Science (AAAS)Print ISSN: 0036-8075Electronic ISSN: 1095-9203Topics: BiologyChemistry and PharmacologyComputer ScienceMedicineNatural Sciences in GeneralPhysicsPublished by: -
2P. Y. Meslin ; O. Gasnault ; O. Forni ; S. Schroder ; A. Cousin ; G. Berger ; S. M. Clegg ; J. Lasue ; S. Maurice ; V. Sautter ; S. Le Mouelic ; R. C. Wiens ; C. Fabre ; W. Goetz ; D. Bish ; N. Mangold ; B. Ehlmann ; N. Lanza ; A. M. Harri ; R. Anderson ; E. Rampe ; T. H. McConnochie ; P. Pinet ; D. Blaney ; R. Leveille ; D. Archer ; B. Barraclough ; S. Bender ; D. Blake ; J. G. Blank ; N. Bridges ; B. C. Clark ; L. DeFlores ; D. Delapp ; G. Dromart ; M. D. Dyar ; M. Fisk ; B. Gondet ; J. Grotzinger ; K. Herkenhoff ; J. Johnson ; J. L. Lacour ; Y. Langevin ; L. Leshin ; E. Lewin ; M. B. Madsen ; N. Melikechi ; A. Mezzacappa ; M. A. Mischna ; J. E. Moores ; H. Newsom ; A. Ollila ; R. Perez ; N. Renno ; J. B. Sirven ; R. Tokar ; M. de la Torre ; L. d'Uston ; D. Vaniman ; A. Yingst
American Association for the Advancement of Science (AAAS)
Published 2013Staff ViewPublication Date: 2013-09-28Publisher: American Association for the Advancement of Science (AAAS)Print ISSN: 0036-8075Electronic ISSN: 1095-9203Topics: BiologyChemistry and PharmacologyComputer ScienceMedicineNatural Sciences in GeneralPhysicsPublished by: -
3Marcano O., A. ; Loper, C. ; Melikechi, N.
Woodbury, NY : American Institute of Physics (AIP)
Published 2001Staff ViewISSN: 1077-3118Source: AIP Digital ArchiveTopics: PhysicsNotes: We report on a mode-mismatched pump-probe thermal lens experiment performed to measure absorption coefficients as small as 10−8 cm−1 in liquid and solid samples. We take advantage of the large axial dimension of the thermal lens by focusing the pump beam in the presence of a collimated probe beam. We measure an absorption coefficient at 533 nm of (6.8±0.1)×10−4 cm−1 and of (3±0.3)×10−6 cm−1 for distilled water and BK7 optical glass, respectively. © 2001 American Institute of Physics.Type of Medium: Electronic ResourceURL: -
4Marcano O., A. ; Melikechi, N.
College Park, Md. : American Institute of Physics (AIP)
Published 2000Staff ViewISSN: 1089-7690Source: AIP Digital ArchiveTopics: PhysicsChemistry and PharmacologyNotes: We measure the absorption spectrum of a rhodamine 101 solution in ethanol in the spectral region 555–583 nm as a function of the incident light fluence. We show that increasing the field fluence results in a blueshift of the spectrum and absorption depletion with no spectral broadening. These results are explained in terms of a model that includes the influence of the solvent over the spectrum of the dye molecule. © 2000 American Institute of Physics.Type of Medium: Electronic ResourceURL: -
5Bouchene, M.A. ; Blanchet, V. ; Nicole, C. ; Melikechi, N. ; Girard, B. ; Ruppe, H. ; Rutz, S. ; Schreiber, E. ; Wöste, L.
Springer
Published 1998Staff ViewISSN: 1434-6079Keywords: PACS. 32.80.Qk Coherent control of atomic interactions with photons - 32.80.Rm Multiphoton ionization and excitation to highly excited states (e.g., Rydberg states) - 42.50.Md Optical transient phenomena: quantum beats, photon echo, free-induction decay, dephasings and revivals, optical nutation, and self-induced transparencySource: Springer Online Journal Archives 1860-2000Topics: PhysicsNotes: Abstract: The interaction of a sequence of two identical ultrashort laser pulses with an atomic system results in quantum interferences as in Ramsey fringes experiments. These interferences allow achievement of temporal coherent control of the excitation probability. We present the results of a temporal coherent control experiment on two different atomic systems: one-photon absorption in K (4s-4p) and two-photon absorption in Cs (6s-7d). In K, the quantum interferences between the two excitation paths associated with the laser pulses are revealed through rapid oscillations of the excitation probability as a function of the time delay between the two pulses. These oscillations take place at the transition frequency (period T = 2.56 fs). The interferences are modulated by beats (at about 580 fs) resulting from the doublet structure of the excited state (4p (2 P 1/2 , 2 P 3/2 )). Three complementary interpretations of this experiment are presented: in terms of beats of quantum interferences, of variation in the spectrum intensity, and of wave packet interferences. Whenever the two laser pulses are temporally overlapped, optical interferences are superimposed on to the quantum interferences. The distinction between these two types of interference is clearly revealed in the two-photon excitation scheme performed on Cs (6s-7d (2 D 3/2 , 2 D 5/2 )) because quantum interferences occur at twice the frequency of the optical interferences.Type of Medium: Electronic ResourceURL: