Search Results - "Szelezniak, M."

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  1. 1

    Direct electron imaging in electron microscopy with monolithic active pixel sensors by Deptuch, G., Besson, A., Rehak, P., Szelezniak, M., Wall, J., Winter, M., Zhu, Y.

    Published in Ultramicroscopy (01-08-2007)
    “…A new imaging device for dynamic electron microscopy is in great demand. The detector should provide the experimenter with images having sufficient spatial…”
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    Journal Article
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    A MAPS based vertex detector for the STAR experiment at RHIC by Greiner, L., Anderssen, E., Matis, H.S., Ritter, H.G., Schambach, J., Silber, J., Stezelberger, T., Sun, X., Szelezniak, M., Thomas, J., Videbaek, F., Vu, C., Wieman, H.

    “…The STAR experiment at RHIC is in the process of upgrading the inner detector region of the experiment to improve the vertex resolution. We describe the…”
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    Journal Article
  3. 3

    A fast monolithic active pixel sensor with pixel-level reset noise suppression and binary outputs for charged particle detection by Degerli, Y., Deptuch, G., Fourches, N., Himmi, A., Yan Li, Lutz, P., Orsini, F., Szelezniak, M.

    Published in IEEE Transactions on Nuclear Science (01-12-2005)
    “…In order to develop precision vertex detectors for the future linear collider, fast monolithic active pixel sensors are studied. A standard CMOS 0.25 mum…”
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    Journal Article Conference Proceeding
  4. 4

    Performance of a Fast Binary Readout CMOS Active Pixel Sensor Chip Designed for Charged Particle Detection by Degerli, Yavuz, Li, Yan, Lutz, Pierre, Orsini, Fabienne, Szelezniak, Michal, Besancon, Marc, Besson, Auguste, Claus, Gilles, Deptuch, Grzegorz, Dulinski, Wojciech, Fourches, Nicolas, Goffe, Mathieu, Himmi, Abdelkader

    Published in IEEE transactions on nuclear science (01-12-2006)
    “…We report on the performance of the MIMOSA8 (HiMAPS1) chip. The chip is a 128times32 pixels array where 24 columns have discriminated binary outputs and eight…”
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    Journal Article
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    Current Mode Monolithic Active Pixel Sensor With Correlated Double Sampling for Charged Particle Detection by Szelezniak, M A, Deptuch, G W, Guilloux, F, Heini, S, Himmi, A

    Published in IEEE sensors journal (01-01-2007)
    “…A monolithic active pixel sensor operating in current mode for charged particle detection is described. The sensing element in each pixel is an n- well/p-sub…”
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    Journal Article
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    Operation of a double-sided CMOS pixelated detector at a high intensity e+e− particle collider by Cuesta, D., Baudot, J., Claus, G., Goffe, M., Jaaskelainen, K., Santelj, L., Specht, M., Szelezniak, M., Ripp-Baudot, I.

    “…This article reports the first operation of a double-sided CMOS pixelated ladder in a collider experiment, namely in the inner tracker volume of the Belle II…”
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    Journal Article
  13. 13

    Observation of D0 meson nuclear modifications in Au+Au collisions at sNN=200 GeV by Adkins, J. K., Agakishiev, G., Ahammed, Z., Alford, J., Arkhipkin, D., Butterworth, J., Calderón de la Barca Sánchez, M., Cervantes, M. C., Chen, H. F., Chen, L., Cherney, M., Codrington, M. J. M., Debbe, R. R., Dedovich, T. G., Derevschikov, A. A., Derradi de Souza, R., Didenko, L., Ding, F., Draper, J. E., Du, C. M., Dunkelberger, L. E., Efimov, L. G., Engle, K. S., Eppley, G., Eun, L., Eyser, O., Fazio, S., Garand, D., Geurts, F., Girard, M., Greiner, L., Guo, Y., Hirsch, A., Horvat, S., Huang, B., Jacobs, W. W., Jang, H., Kotchenda, L., Kycia, R. A., Lauret, J., LeVine, M. J., Li, C., Li, W., Li, Y., Ljubicic, T., Lomnitz, M., Longacre, R. S., Mahapatra, D. P., Margetis, S., Matis, H. S., McShane, T. S., Mioduszewski, S., Mohanty, B., Morozov, D. A., Nogach, L. V., Novak, J., Nurushev, S. B., Oh, K., Olvitt, D. L., Pawlik, B., Pei, H., Pluta, J., Pujahari, P. R., Quintero, A., Raniwala, R., Ray, R. L., Ritter, H. G., Sahoo, N. R., Salur, S., Sandweiss, J., Shahaliev, E., Shao, M., Sharma, B., Singaraju, R. N., Sorensen, P., Stanislaus, T. D. S., Strikhanov, M., Sun, X., Sun, X. M., Takahashi, J., Tang, A. H., Tang, Z., Thomas, J. H., Timmins, A. R., Tokarev, M., Turnau, J., Ullrich, T., Van Buren, G., Vasconcelos, G. M. S., Vertesi, R., Viyogi, Y. P., Wang, J. S., Westfall, G. D., Xie, W., Xu, Y., Yan, W., Ye, Z., Yip, K., Zhang, J. B., Zhu, X.

    Published in Physical review letters (30-09-2014)
    “…We report the first measurement of charmed-hadron (D0) production via the hadronic decay channel (D0→K-+π+) in Au+Au collisions at √sNN=200 GeV with the STAR…”
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    Journal Article
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    CMOS sensors for the vertex detector of the future international linear collider by Li, Y., Degerli, Y., Besançon, M., Besson, A., Claus, G., Deptuch, G., Dulinski, W., Fourches, N., Goffe, M., Himmi, A., Lutz, P., Orsini, F., Szelezniak, M.

    “…Fast Monolithic Active Pixel Sensors (MAPS) are now being studied for the high-spatial resolution and high readout speed vertex detector which will be required…”
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    Journal Article
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    Tests of monolithic active pixel sensors at national synchrotron light source by Deptuch, G., Besson, A., Carini, G.A., Siddons, D.P., Szelezniak, M., Winter, M.

    “…The paper discusses basic characterization of Monolithic Active Pixel Sensors (MAPS) carried out at the X12A beam-line at National Synchrotron Light Source…”
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    Journal Article
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    Optimization of Tracking Performance of CMOS Monolithic Active Pixel Sensors by Dulinski, W., Besson, A., Claus, G., Colledani, C., Deptuch, G., Deveaux, M., Gaycken, G., Grandjean, D., Himmi, A., Hu, C., Jaaskeleinen, K., Szelezniak, M., Valin, I., Winter, M.

    Published in IEEE transactions on nuclear science (01-02-2007)
    “…CMOS Monolithic Active Pixel Sensors (MAPS) provide an attractive solution for high precision tracking of minimum ionizing particles. In these devices, a thin,…”
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    Journal Article
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    Monolithic active pixel detector in SOI technology - preliminary results by Niemiec, H., Domanski, K., Grabiec, P., Grodner, M., Jaroszewicz, B., Klatka, T., Kociubinski, A., Koziel, M., Kucewicz, W., Kucharski, K., Kuta, S., Jasielski, J., Marczewski, J., Sapor, M., Szelezniak, M., Tomaszewski, D.

    “…Silicon detectors, and especially silicon pixel detectors, have found wide range of applications, not only in particle physics but also in medicine, space…”
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    Conference Proceeding