Search Results - "Smirnitsky, V"

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  1. 1

    Observation of Migdal’s Effect in Nuclear Emulsions upon Muon Decay in Mesic Atoms by Ditlov, V. A., Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-06-2022)
    “…2520 stops and interactions of mesons were observed in a nuclear emulsion. The energy spectra and angular distribution of Auger electrons accompanying -meson…”
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  2. 2

    Observation of a Liquid–Gas Phase Transition upon Antiproton Annihilation in a Nuclear Emulsion by Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-11-2020)
    “…Five hundred events of antiproton stopping and annihilation in nuclear emulsion were observed. A description of the equation of state for nuclear matter in…”
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  3. 3

    Charged Particles of Energy in Excess of Evaporation Energy from K−-Meson Absorption by Nuclei by Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-03-2019)
    “…It is shown that, upon the stopping of a negatively charged kaon and its absorption by a nucleus, there arise particles whose appearance does not comply with…”
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  4. 4

    Observation of Electrons with Energies up to 180 keV Accompanying μ+ Decay by Byakov, V. M., Ditlov, V. A., Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-05-2018)
    “…It is shown that during the stopping and decaying of positively charged muon ( μ + ) in a nuclear emulsion, there arises with a probability of about 10 −2…”
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  5. 5

    Observation of Migdal’s Effect in the Decays of Positively Charged Pions and Muons by Byakov, V. M., Ditlov, V. A., Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-11-2018)
    “…The energy spectra of fast (10 1 −10 2 keV) electrons accompanying π + → μ + decays of positively charged pions (π + ) stopped in a nuclear emulsion are…”
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  6. 6

    Search for a light dark photon in muonium decay by Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Polukhina, N. G., Smirnitsky, V. A., Starkov, N. I.

    Published in Physics of atomic nuclei (01-05-2017)
    “…About 0.85 × 10 5 events involving stopped μ + and muonium decay were observed in a nuclear photoemulsion with the aim of searches for a light dark photon…”
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  7. 7

    Measurement of the elliptic flux of Z ⩾ 2 charged particles in collisions of relativistic nuclei with photoemulsion nuclei by Dubinina, V. V., Egorenkova, N. P., Krotkova, V. I., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-02-2007)
    “…The azimuthal asymmetry is measured for the emission of Z ≥ 2 particles from the interaction of 22Ne, 24Mg, 32S, 56Fe, 197Au, and 207Pb nuclei with…”
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  8. 8

    The magnetized steel and scintillator calorimeters of the MINOS experiment by Allison, W.W.M., Andreopoulos, C., Ayres, D.S., Barish, B., Barker, M.A., Barnes, P.D., Barrett, W.L., Beall, E., Becker, B.R., Bocean, V., Boehm, J., Border, P.M., Chernichenko, S.K., Choudhary, B.C., Courant, H., Dawson, J.W., de Jong, J.K., Drake, G., Ducar, R., Durkin, T., Escobar, C.O., Fackler, O.D., Falk Harris, E., Felt, N., Frohne, M.V., Gallagher, H.R., Godley, A., Goodman, M.C., Grossman, N., Grudzinski, J.J., Guarino, V., Habig, A., Hanson, J., Harris, D., Hartouni, E.P., Heller, K., Indurthy, D., Irwin, G.M., James, C., Jenner, L., Joffe-Minor, T., Kim, H., Koskinen, D.J., Kostin, M., Krakauer, D.A., Ladran, A.S., Laughton, C., Lee, R., Liu, J., Litchfield, P.J., Litchfield, R.P., Maher, E., McDonald, J., Merzon, G.I., Morse, R., Mualem, L., Murgia, S., Murtagh, M.J., Nelson, C., Nelson, J.K., Nichol, R.J., Onuchin, V.A., Paley, J., Paolone, V., Pavlović, Ž., Pearce, G.F., Pearson, N., Peterson, E.A., Price, L.E., Pushka, D.R., Rameika, R.A., Raufer, T.M., Reyna, D.E., Saakyan, R., Saoulidou, N., Schwienhorst, R., Semenov, V.K., Shanahan, P., Smirnitsky, V., Speakman, B., Swan, J.M., Tagg, N., Talaga, R.L., Terekhov, A., Tetteh-Lartey, E., Thomas, J., Trendler, R., Trevor, J., Vaziri, K., Wai, L., Ward, C.P., Webb, R.C., Wehmann, A., White, R.F., Wojcicki, S.G., Yan, W.G., Yang, T., Yun, J.C., Zheng, H., Zwaska, R.

    “…The Main Injector Neutrino Oscillation Search (MINOS) experiment uses an accelerator-produced neutrino beam to perform precision measurements of the neutrino…”
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  9. 9

    Study of muon neutrino disappearance using the Fermilab Main Injector neutrino beam by Adamson, P., Andreopoulos, C., Arms, K. E., Armstrong, R., Auty, D. J., Avvakumov, S., Ayres, D. S., Baller, B., Barish, B., Barnes, P. D., Barr, G., Barrett, W. L., Beall, E., Becker, B. R., Belias, A., Bernstein, R. H., Bhattacharya, D., Bishai, M., Blake, A., Bock, B., Bock, G. J., Boehm, J., Boehnlein, D. J., Bogert, D., Border, P. M., Bower, C., Buckley-Geer, E., Cabrera, A., Cavanaugh, S., Chapman, J. D., Cherdack, D., Childress, S., Choudhary, B. C., Cobb, J. H., Coleman, S. J., Culling, A. J., de Jong, J. K., Dierckxsens, M., Diwan, M. V., Dorman, M., Drakoulakos, D., Durkin, T., Dytman, S. A., Erwin, A. R., Escobar, C. O., Evans, J. J., Harris, E. Falk, Feldman, G. J., Fields, T. H., Ford, R., Frohne, M. V., Gallagher, H. R., Godley, A., Gogos, J., Goodman, M. C., Gouffon, P., Gran, R., Grashorn, E. W., Grossman, N., Grzelak, K., Habig, A., Harris, D., Harris, P. G., Hartnell, J., Hartouni, E. P., Hatcher, R., Heller, K., Himmel, A., Holin, A., Howcroft, C., Hylen, J., Indurthy, D., Irwin, G. M., Ishitsuka, M., Jaffe, D. E., James, C., Jenner, L., Jensen, D., Kafka, T., Kang, H. J., Kasahara, S. M. S., Kim, M. S., Koizumi, G., Kopp, S., Kordosky, M., Koskinen, D. J., Kotelnikov, S. K., Kreymer, A., Kumaratunga, S., Lang, K., Lebedev, A., Lee, R., Ling, J., Liu, J., Litchfield, P. J., Litchfield, R. P., Loiacono, L., Lucas, P., Mann, W. A., Marchionni, A.

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  10. 10
  11. 11

    Measurement of neutrino velocity with the MINOS detectors and NuMI neutrino beam by Adamson, P., Andreopoulos, C., Arms, K. E., Armstrong, R., Auty, D. J., Avvakumov, S., Ayres, D. S., Baller, B., Barish, B., Barnes, P. D., Barr, G., Barrett, W. L., Beall, E., Becker, B. R., Belias, A., Bergfeld, T., Bernstein, R. H., Bhattacharya, D., Bishai, M., Blake, A., Bock, B., Bock, G. J., Boehm, J., Boehnlein, D. J., Bogert, D., Border, P. M., Bower, C., Buckley-Geer, E., Cabrera, A., Chapman, J. D., Cherdack, D., Childress, S., Choudhary, B. C., Cobb, J. H., Coleman, S. J., Culling, A. J., de Jong, J. K., De Santo, A., Dierckxsens, M., Diwan, M. V., Dorman, M., Drakoulakos, D., Durkin, T., Erwin, A. R., Escobar, C. O., Evans, J. J., Harris, E. Falk, Feldman, G. J., Fields, T. H., Fitzpatrick, T., Ford, R., Frohne, M. V., Gallagher, H. R., Giurgiu, G. A., Godley, A., Gogos, J., Goodman, M. C., Gouffon, P., Gran, R., Grashorn, E. W., Grossman, N., Grzelak, K., Habig, A., Harris, D., Harris, P. G., Hartnell, J., Hartouni, E. P., Hatcher, R., Heller, K., Holin, A., Howcroft, C., Hylen, J., Indurthy, D., Irwin, G. M., Ishitsuka, M., Jaffe, D. E., James, C., Jenner, L., Jensen, D., Joffe-Minor, T., Kafka, T., Kang, H. J., Kasahara, S. M. S., Kim, M. S., Koizumi, G., Kopp, S., Kordosky, M., Koskinen, D. J., Kotelnikov, S. K., Kreymer, A., Kumaratunga, S., Lang, K., Lebedev, A., Lee, R., Ling, J., Liu, J., Litchfield, P. J., Litchfield, R. P., Lucas, P., Luebke, W.

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  12. 12

    Observation of the production of 8Li fragments in alpha-particle interaction with photoemulsion nuclei by Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-11-2015)
    “…About 37 × 10 3 events of alpha-particle interaction with photoemulsion nuclei were scanned. Among them, 339 events involving the production of a 8 Li fragment…”
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  13. 13
  14. 14

    Absorption of slow K− mesons in nuclear emulsion by Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in JETP letters (01-02-2014)
    “…The absorption of slow K − mesons in nuclear emulsion through the mesonic and nonmesonic channels has been measured. It has been shown that K − mesons are…”
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  15. 15

    Evaporated particles in the annihilation of K− mesons in a nuclear photoemulsion by Dubinina, V. V., Egorenkova, N. P., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-01-2015)
    “…The emission of light nuclei ( p, d, t ) in the annihilation of K − mesons stopped in a nuclear photoemulsion is measured. The deuteron-to-proton yield ratio…”
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  16. 16

    Determination of nuclear excitation energies from the number of evaporated particles by Ditlov, V. A., Dubinina, V. V., Egorenkova, N. P., Krotkova, V. I., Pozharova, E. A., Smirnitsky, V. A.

    Published in Physics of atomic nuclei (01-11-2005)
    “…The mean number <N{sub b}> of particles evaporated in the interaction of {sup 22}Ne, {sup 32}S, and {sup 56}Fe nuclei with photoemulsion nuclei was measured as…”
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  17. 17

    Observation of the production of [sup.8]Li fragments in alpha-particle interaction with photoemulsion nuclei by Dubinina, V.V, Egorenkova, N.P, Pozharova, E.A, Smirnitsky, V.A

    Published in Physics of atomic nuclei (01-11-2015)
    “…About 37 x [10.sup.3] events of alpha-particle interaction with photoemulsion nuclei were scanned. Among them, 339 events involving the production of a…”
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  18. 18

    Semi-automatic measurement of gap–blob sizes along tracks of relativistic ions for computer identification by Ditlov, V.A., Dubinina, V.V., Krotkova, V.I., Pozharova, E.A., Smirnitsky, V.A.

    Published in Radiation measurements (01-06-2003)
    “…A method for the identification of relativistic ions with low atomic numbers in nuclear emulsion was proposed for measurements with a semi-automatic…”
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  19. 19

    Probing of compact baryonic configurations in nuclei in $A(p,{\bar p})X$ reactions and antiproton formation length in nuclear matter by Kiselev, Yu. T, Sheinkman, V. A, Akindinov, A. V, Chumakov, M. M, Martemyanov, A. N, Smirnitsky, V. A, Terekhov, Yu. V, Paryev, E. Ya

    Published 13-05-2012
    “…Phys.Rev.C85:054904,2012 Inclusive cross sections $\sigma^A=Ed^3{\sigma(X,P_t^2)/d^3p}$ of antiproton and negative pion production on Be, Al, Cu and Ta targets…”
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  20. 20

    Determination of the accuracy of measuring the energy of charged particles by their path lengths in nuclear emulsion by Barabash, A. S, Bradnova, V. Ya, Chernyavsky, M. M, Dubinina, V. V, Egorenkova, N. P, Konovalov, S. I, Polukhina, N. G, Pozharova, E. A, Shchedrina, T. V, Smirnitsky, V. A, Starkov, N. I, So, Tan Nang, Umatov, V. I

    Published 12-11-2012
    “…The path lengths of monochromatic muons emerging in the $\pi \to \mu\nu_{\mu} $ decay were measured by the coordinate method with the view to determine their…”
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