Search Results - "Stirbet, M."

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  1. 1
  2. 2

    Concepts for the JLAB Ampere-Class CW Cryomodule by Rimmer, R., Daly, E.F., Hicks, W.R., Henry, J., Preble, J., Stirbet, M., Wang, H., Wilson, K.M., Wu, G.

    “…We describe the concepts and developments underway at JLab as part of the program to develop a new CW cryomodule capable of transporting Ampere-level beam…”
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    Conference Proceeding
  3. 3

    Testing procedures and results of the prototype fundamental power coupler for the Spallation Neutron Source by Stirbet, M., Campisi, I.E., Daly, E.F., Davis, G.K., Drury, M., Kneisel, P., Myneni, G., Powers, T., Schneider, W.J., Wilson, K.M., Yang, Y., Cummings, K.A., Hardek, T.

    “…High-power RF testing with peak power in excess of 500 kW has been performed on prototype fundamental power couplers (FPC) for the Spallation Neutron Source…”
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    Conference Proceeding
  4. 4

    SNS cryomodule performance by Preble, P., Campisi, I.E., Daly, E., Davis, G.K., Delayen, J.R., Drury, M., Grenoble, C., Hogan, J., King, L., Kneisel, P., Mammosser, J., Powers, T., Stirbet, M., Wang, H., Whitlatch, T., Wiseman, M.

    “…Thomas Jefferson National Accelerating Facility, Jefferson Lab, is producing 24 Superconducting Radio Frequency (SRF) cryomodules for the Spallation Neutron…”
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    Conference Proceeding
  5. 5

    Processing test stand for the fundamental power couplers of the Spallation Neutron Source (SNS) superconducting cavities by Stirbet, M., Campisi, I.E., Davis, G.K., Drury, M., Grenoble, C., Myneni, G., Powers, T., Wilson, K.M.

    “…A test stand has been designed, constructed and commissioned for the processing of the SNS superconducting cavity fundamental power couplers. The cart is…”
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    Conference Proceeding
  6. 6

    Electromagnetic simulations and properties of the fundamental power couplers for the SNS superconducting cavities by Kang, Y., Kim, S., Doleans, M., Campisi, I.E., Stirbet, M., Kneisel, P., Ciovati, G., Wu, G., Yla-Oijala, P.

    “…The Spallation Neutron Source (SNS) makes use of superconducting cavities for the acceleration of negative H ions in the main linac. Two types of 6-cell…”
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    Conference Proceeding
  7. 7

    The LHC superconducting cavities by Boussard, D., Chiaveri, E., Haebel, E., Kindermann, H.P., Losito, R., Marque, S., Rodel, V., Stirbet, M.

    “…The LHC RF system, which must handle high intensity (0.5 A d.c.) beams, makes use of superconducting single-cell cavities, best suited to minimizing the…”
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    Conference Proceeding
  8. 8

    Studies of the effects of associated photodynamic therapy and drugs on macromolecular synthesis of tumoral cells grown in vitro by Dima, V F, Mihăilescu, I N, Dima, S V, Chivu, L, Stirbeţ, M, Udrea, M, Popa, A

    “…HeLa S3 tumoral cells were used as an experimental model for studying the association of photodynamic therapy (PDT) and antitumoral agents. Tumoral monolayer…”
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    Journal Article
  9. 9

    RF-thermal-structural analysis of a waveguide higher order mode absorber by Cheng, G., Daly, E.F., Rimmer, R.A., Stirbet, M., Vogel, L., Wang, H., Wilson, K.M.

    “…For an ongoing high current cryomodule project, a total of 5 higher order mode (HOM) absorbers are required per cavity. The load is designed to absorb Radio…”
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    Conference Proceeding
  10. 10

    JLAB high-current CW cryomodules for ERL and FEL applications by Rimmer, R.A., Bundy, R., Cheng, G., Ciovati, G., Daly, E.F., Getz, R., Henry, J., Hicks, W.R., Kneisel, P., Manning, S., Manus, R., Marhauser, F., Smith, K., Stirbet, M., Turlington, L., Vogel, L., Wang, H., Wilson, K.M.

    “…We describe the activities underway at JLab to develop new CW cryomodules capable of transporting up to Ampere-levels of beam currents for use in ERLs and…”
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    Conference Proceeding
  11. 11

    RF Conditioning and Testing of Fundamental Power Couplers for SNS Superconducting Cavity Production by Stirbet, M., Wilson, K.M., Wiseman, M., Henry, J., Drury, M., Davis, G.K., Grenoble, C., Powers, T., Myneni, G., Campisi, I.E., Kang, Y., Stout, D.

    “…The Spallation Neutron Source (SNS) makes use of 33 medium beta (0.61) and 48 high beta (0.81) superconducting cavities. Each cavity is equipped with a…”
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    Conference Proceeding
  12. 12

    Fabrication of the Prototype 201.25 MHz Cavity for a Muon Ionization Cooling Experiment by Rimmer, R.A., Manning, S., Manus, R., Phillips, L., Stirbet, M., Worland, K., Wu, G., Li, D., MacGill, R., Staples, J., Virostek, S., Zisman, M., Taminger, K., Hafley, R., Martin, R., Summers, D., Reep, M.

    “…We describe the fabrication and assembly of the first prototype 201.25 MHz copper cavity for the muon ionization cooling experiment (MICE). This cavity was…”
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    Conference Proceeding
  13. 13

    Status of the R&D towards electron cooling of RHIC by Ben-Zvi, I., Chang, X., Drees, A., Fedotov, A. V., Fischer, W., Ganetis, G., Gassner, D., Grimes, J., Hahn, H., Hammons, L., Hershcovitch, A., Alduino, J., Hseuh, H-C, Kayran, D., Kewisch, J., Lambiase, R., Lederle, D., Litvinenko, V., Longo, C., MacKay, W., Mahler, G., McIntyre, G., Barton, D., Meng, W., Oerter, B., Pai, C., Parzen, G., Pate, D., Phillips, D., Plate, S., Pozdeyev, E., Rao, T., Reich, J., Beavis, D., Roser, T., Ruggiero, A., Russo, T., Schultheiss, C., Segalov, Z., Smedley, J., Smith, K., Tallerico, T., Tepikian, S., Than, R., Blaskiewicz, M., Todd, R., Trbojevic, D., Tuozzolo, J., Wanderer, P., Wang, G., Weiss, D., Wu, Q., Yip, K., Zaltsman, A., Favale, A., Brennan, J., Holmes, D., Sredniawski, J., Bluem, H., Cole, M., Rathke, J., Schultheiss, T., Todd, A., Parkhomchuk, V., Reva, V., Burov, A., Burrill, A., Nagaitsev, S., Prost, L., Sidorin, A., Smirnov, A., Derbenev, Y., Kneisel, P., Mammosser, J., Phillips, L., Preble, J., Reece, C., Calaga, R., Rimmer, R., Saunders, J., Stirbet, M., Wang, H., Aleksandrov, A., Douglas, D., Kang, Y., Abell, D., Bell, G., Bruhwiler, D., Cameron, P., Busby, R., Cary, J., Dimitrov, D., Messmer, P., Ranjbar, V., Smithe, D., Sobol, A., Stoltz, P.

    “…The physics interest in a luminosity upgrade of RHIC requires the development of a cooling-frontier facility. Detailed calculations were made of electron…”
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    Conference Proceeding
  14. 14

    High Power RF Test Facility at the SNS by Kang, Y., Anderson, D., Campisi, I.E., Champion, M.S., Crofford, M., Fuja, R., Gurd, P., Hasan, S.M.S., Kasemir, K., McCarthy, M., Stout, D., Tang, J., Vassioutchenko, A., Wezensky, M., Davis, G.K., Drury, M., Powers, T., Stirbet, M.

    “…RF Test Facility (RFTF) has been constructed to support present and future needs in testing, processing and conditioning of various high power RF components of…”
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    Conference Proceeding
  15. 15

    In vitro effects of pulsed near-ultraviolet laser exposure on human larynx carcinoma cells by Dima, V F, Murg, B, Dima, S V, Petraşincu, D, Popescu, L, Stirbeţ, M, Popa, A

    “…Effects of pulsed near-ultraviolet laser beam on structural characteristics and macromolecular synthesis of carcinoma HEp2 cells were investigated. Laser…”
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    Journal Article
  16. 16

    The fundamental power coupler prototype for the Spallation Neutron Source (SNS) superconducting cavities by Campisi, I.E., Daly, E.F., Henry, J.E., Kneisel, P., Schneider, W.J., Stirbet, M., Wilson, K.M.

    “…The SNS linac contains superconducting cavities with /spl beta/.61 and .81 for the acceleration of H/sup -/ ions. Each of the 6-cell cavities, resonant at 805…”
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    Conference Proceeding
  17. 17

    Laser effects on cellular adhesion and influence on the interrelation between HeLa S3 and human diploid cells by Dima, V F, Petraşincu, D, Dima, S V, Mihăilescu, I N, Stirbeţ, M, Popa, A

    “…The interactions between HeLa S3 tumoral cells and human fibroblasts after nitrogen-laser irradiation (337.1 nm) have been studied by using an in vitro cell…”
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    Journal Article
  18. 18

    Improvements to power couplers for the LEP2 superconducting cavities by Tuckmantel, J., Benvenuti, C., Bloess, D., Boussard, D., Geschonke, G., Haebel, E., Hilleret, N., Juras, S., Kindermann, H.P., Uythoven, J., Wyss, C., Stirbet, M.

    “…Power couplers for the 352 MHz LEP2 superconducting RF cavities have been plagued by vacuum and electron outbursts which are attributed to multipacting…”
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    Conference Proceeding