Search Results - "Kobdaj, C."

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  1. 1

    Validation of a pseudo-3D phantom for radiobiological treatment plan verifications by Kartini, D A, Sokol, O, Wiedemann, J, Tinganelli, W, Witt, M, Camazzola, G, Krämer, M, Talabnin, C, Kobdaj, C, Fuss, M C

    Published in Physics in medicine & biology (24-11-2020)
    “…Performing realistic and reliable in vitro biological dose verification with good resolution for a complex treatment plan remains a challenge in particle beam…”
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    Finite volume effects in the chiral extrapolation of baryon masses by Lutz, M. F. M., Bavontaweepanya, R., Kobdaj, C., Schwarz, K.

    “…We perform an analysis of the QCD lattice data on the baryon octet and decuplet masses based on the relativistic chiral Lagrangian. The baryon self-energies…”
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  4. 4

    The chiral Lagrangian with three flavors and large-$$N_c$$ sum rules by Heo, Yonggoo, Kobdaj, C., Lutz, Matthias F. M.

    “…Abstract We reconsider the chiral Lagrangian with three-flavor baryon fields. A systematic analysis of all low-energy constants (LEC) that contribute to the…”
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  5. 5

    The chiral Lagrangian with three flavors and large-Nc sum rules by Heo, Yonggoo, Kobdaj, C., Lutz, Matthias F. M.

    “…We reconsider the chiral Lagrangian with three-flavor baryon fields. A systematic analysis of all low-energy constants (LEC) that contribute to the…”
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  6. 6

    Optimizing the composition of barium-borate glasses for enhancing thermal neutron shielding efficiency: Monte Carlo simulation by Boontueng, P., Pencharee, S., Mutuwong, C., Kaewkhao, J., Thongjerm, P., Wonglee, S., Kothan, S., Intachai, N., Kobdaj, C.

    “…A transparent window with thermal neutron shielding properties was an important part of the stations of the nuclear reactors and the particle accelerators. The…”
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  7. 7

    A Study on Proton Track Reconstruction in A Pixel-based Telescope Using A Clinical Proton Beam by Songmoolnak, A., Ritjoho, N., Sanghangthum, T., Herold, C., Boontueng, P., Phumara, P., Charoonratana, L., Simantathammakul, T., Kobdaj, C., Bergen pCT Collaboration

    Published in IEEE transactions on nuclear science (24-10-2024)
    “…Proton computed tomography (pCT) is a novel three-dimensional medical imaging technique proposed for the pre-treatment diagnosis of patients undergoing proton…”
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  8. 8

    Fast scintillating Ce3+ doped gadolinium aluminum fluoroborate glass for calorimetry in proton CT prototype: A preliminary work by Boontueng, P., Ritjoho, N., Wantana, N., Limkitjaroenporn, P., Kim, H.J., Sanghangthum, T., Chanlek, N., Limphirat, A., Yan, Y., Kaewkhao, J., Kobdaj, C.

    Published in Radiation measurements (01-04-2023)
    “…In this work, Ce3+-doped gadolinium aluminum fluoroborate glass scintillators, 25Gd2O3-(65-x)B2O3–10AlF3-xCeF3, where, x = 0, 0.05, 0.1, 0.2, and, 0.3 mol%,…”
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  9. 9

    Detecting and shielding properties of Ce3+-doped zinc–gadolinium-fluoroborate glasses for X-ray and proton radiation by Boontueng, P., Ritjoho, N., Laojamnongwong, N., Phumara, P., Songmoolnak, A., Saenpoowa, J., Wantana, N., Sanghangthum, T., Chanlek, N., Kothan, S., Limphirat, A., Yan, Y., Kaewkhao, J., Kobdaj, C.

    Published in Optical materials (01-08-2023)
    “…Zinc-gadolinium-fluoroborate glasses doped with cerium fluoride (CeF3) were successfully fabricated to detect and shield X-ray and proton radiation. The doped…”
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  10. 10

    PANDA Phase One: PANDA collaboration by Liu, Z., Liu, B., Shen, X., Zhao, J., Alkakhi, W., Bökelmann, S., Frech, J., Fritsch, M., Hagdorn, R., Keshk, I., Küßner, M., Li, J., Maldaner, S., Pflüger, S., Triffterer, T., Chauhan, V., Hammann, C., Schmidt, C., Pantea, D., Filo, G., Korcyl, K., Lebiedowicz, P., Pysz, K., Szczurek, A., Firlej, M., Swientek, K., Terlecki, P., Korcyl, G., Malige, A., Nowakowski, K., Schmitt, L., Dzhygadlo, R., Gerhardt, A., Karabowicz, R., Täschner, A., Alexeev, G., Koshurnikov, E. K., Lobanov, Y. Yu, Olshevskiy, A. G., Piskun, A. A., Shimanski, S., Skachkova, A. N., Tokmenin, V., Zhuravlev, N. I., Nerling, F., Diehl, S., Dormenev, V., Düren, M., Erlen, T., Kripko, A., Metag, V., Novotny, R., Kalita, K., Tavukoglu, Z., Gillitzer, A., Goldenbaum, F., Grunwald, D., Isaksson, L., Lauth, W., Schlimme, S., Thiel, M., Ehret, A., Noll, O., Chernetsky, V., Fedorets, P., Kantsyrev, A., Boukharov, A., Malyshev, O., Hüsken, N., Yan, Y., Kuyanov, I. A., Boca, G., Finger, M., Finger, M., Derevschikov, A., Ferapontov, V., Goncharenko, Y., Levin, A., Morozov, D., Nogach, L., Shein, I., Yakutin, A., Belostotski, S., Izotov, A., Miklukho, O., Wölbing, D., Godre, S., Crede, V., Eugenio, P., Calvo, D., Wheadon, R., Iazzi, F., Kupsc, A., Wolke, M., Chlopik, A., Zwieglinski, B., Bühler, P., Marton, J., Fischer, C. S., Haidenbauer, J.

    “…The Facility for Antiproton and Ion Research (FAIR) in Darmstadt, Germany, provides unique possibilities for a new generation of hadron-, nuclear- and atomic…”
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  11. 11

    Development of new calibrating material for luminescence spectrometer from Eu3+ doped aluminum sodium calcium borate glass by Jarucha, N., Ruangtaweep, Y., Meejitpaisan, P., Kim, H.J., Boontueng, P., Kobdaj, C., Ritjoho, N., Sanghangthum, T., Valiev, D., Stepanov, S., Intachai, N., Kothan, S., Kaewkhao, J.

    “…The calibration standards are formulated to correct emissions spectra and systematically monitor sensitivity fluctuations in luminescence spectrometers. This…”
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  12. 12

    Synthesis and characterization of Ce3+-doped barium-gadolinium-fluoroborate glasses for proton beam diagnostic by Boontueng, P., Ritjoho, N., Laojamnongwong, N., Phumara, P., Songmoolnak, A., Saenpoowa, J., Wantana, N., Pinitkha, N., Kim, H.J., Sanghangthum, T., Chanlek, N., Limphirat, A., Yan, Y., Kothan, S., Kaewkhao, J., Kobdaj, C.

    Published in Optik (Stuttgart) (01-09-2023)
    “…By using a melt-quenching technique in an air atmosphere, barium-gadolinium-fluoroborate scintillating glasses with different concentrations of BaO and CeF3…”
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  13. 13

    Precision resonance energy scans with the PANDA experiment at FAIR: Sensitivity study for width and line shape measurements of the X(3872) by Davı, F., Montalto, L., Natali, P. P., Rinaldi, D., Scalise, L., Held, T., Holtmann, T., Kopf, B., Kuhlmann, M., Kümmel, M., Reicherz, G., Weber, T., Hammann, C., Salisbury, B., Bianconi, A., Jaworowski, J., Krawczyk, M., Michałek, M., Płażek, J., Lebiedowicz, P., Fiutowski, T., Smyrski, J., Schmitt, L., Flemming, H., Heinz, A., Kurilla, U., Saito, T., Schepers, G., Arefiev, V. A., Strokovsky, E. A., Watts, D., Eyrich, W., Pfaffinger, M., Hamdi, A., Kisel, I., Bracco, G., Dormenev, V., Föhl, K., Galuska, M., Hayrapetyan, A., Lange, J. S., Schmidt, M., Thöring, U., Wohlfahrt, B., Deepak, P. N., Apostolou, A., Kappert, R., Derichs, A., Dosdall, R., Lai, A., Wüstner, P., Ma, X., Isaksson, L., Denig, A., Sfienti, C., Capozza, L., Leithoff, H. H., Maas, F., Maldaner, S., Michel, M., Goryachev, V., Kristi, N., Matveev, V. A., Hargens, C., Hergemöller, A. K., Hüsken, N., Khoukaz, A., Kobdaj, C., Srisawad, P., Kononov, S., Kravchenko, E. A., Antokhin, E., Pyata, E., Kunne, R., Finger, M., Finger, M., Pesek, M., Gallus, P., Minaev, N., Ryazantsev, A., Ryzhikov, S., Uzunian, A., Yabsley, B., Izotov, A., Manaenkov, S., Zhdanov, A., Makonyi, K., Wölbing, D., Atac, A., Bäck, T., Cederwall, B., Bussa, M. P., Ikegami Andersson, W., Wolke, M., Diaz, J., Melnychuk, D., Wronka, S., Amsler, C., Nalti, W., Zmeskal, J.

    “… This paper summarises a comprehensive Monte Carlo simulation study for precision resonance energy scan measurements. Apart from the proof of principle for…”
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  14. 14

    Study of doubly strange systems using stored antiprotons by Krusche, B., Steinacher, M., Liu, B., Liu, Z., Wang, C., Albrecht, M., Held, T., Holtmann, T., Ball, M., Hammann, C., Schmidt, C., Schmitz, R., Wendel, C., Bianconi, A., Pantea, D., Czyzycki, W., Lisowski, E., Lisowski, F., Michałek, M., Strzempek, P., Böhm, R., Nicmorus Marinescu, D., Ehret, A., Flemming, H., Traxler, M., Voss, B., Arefiev, A., Dodokhov, V.Kh, Lobanov, V.I., Olshevskiy, A., Lehmann, A., Pfaffinger, M., Seth, K., Savriè, M., Kisel, I., Zyzak, M., Bersani, A., Bracco, G., Diehl, S., Dormenev, V., Düren, M., Galuska, M., Kühn, W., Nanova, M., Nazarenko, S., Novotny, R., Schmidt, M., Ullrich, M., Ireland, D., Babai, M., Smit, H., van der Weele, J.C., Kumar, A., Bai, M., Cao, L., Cebulla, A., Gillitzer, A., Hu, Q., Lehrach, A., Pütz, J., Schadmand, S., Xu, H., Li, S., Hoek, M., Ahmadi, H., Deiseroth, M., Feldbauer, F., Marta, M., Mora Espì, M.C., Nerling, F., Noll, O., Dolgolenko, A., Fedorets, P., Datar, V., Parmar, A., Roy, B., Fritzsch, C., Wessels, J.P., Onuchin, A.P., Sokolov, A., Kunne, R., Van de Wiele, J., Costanza, S., Montagna, P., Belikov, N., Bukreeva, S., Goncharenko, Y., Kormilitsin, V., Ryazantsev, A., Semenov, P., Zhdanov, A., Iazzi, F., Lavagno, A., Ferrero, L., Lavezzi, L., Maggiora, M., Birsa, R., Pettersson, J., Schönning, K., Trzcinski, A.

    Published in Nuclear physics. A (01-10-2016)
    “…Bound nuclear systems with two units of strangeness are still poorly known despite their importance for many strong interaction phenomena. Stored antiprotons…”
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  15. 15

    Electron-positron annihilation into hadron-antihadron pairs by Yan, Y., Kobdaj, C., Suebka, P., Zheng, Y. M., Faessler, Amand, Gutsche, Th, Lyubovitskij, V. E.

    Published in Physical review. C, Nuclear physics (01-02-2005)
    “…The reactions e{sup +}e{sup -}{yields}{pi}{sup +}{pi}{sup -} and e{sup +}e{sup -}{yields}N{sup lowbar}N with N=p,n are studied in a nonperturbative quark…”
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  18. 18

    Strong interactions in pionium by Yan, Y., Suebka, P., Kobdaj, C., Khosonthongkee, K.

    Published in Nuclear physics. A (15-06-2007)
    “…Pionium is investigated in various pion-pion strong interactions which reproduce well the pion-pion scattering data. It is found that the ground-state pionium…”
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  19. 19

    Feasibility studies of time-like proton electromagnetic form factors at $\overline{\rm P}$ANDA at FAIR by Walford, N., Liu, H., Liu, Z., Albrecht, M., Keshk, I., Leiber, S., Schnier, C., Steinke, M., Wilson, A., Bragadireanu, M., Pantea, D., Domagala, M., Lisowski, F., Poznański, P., Biernat, J., Kistryn, S., Wronska, A., Flemming, H., Krebs, M., Lynen, U., Wilms, A., Dodokhov, V. Kh, Fedunov, A. G., Galoyan, A., Malinina, L. V., Perevalova, E., Pontecorvo, G., Rodionov, V., Sapozhnikov, M. G., Uzhinsky, V., Zhuravlev, N. I., Branford, D., Uhlig, F., Carassiti, V., Fioravanti, E., Garzia, I., Zyzak, M., Gianotti, P., Di Pietro, V., Drexler, P., Etzelmüller, E., Hahn, C., Novotny, R., Quagli, T., Schnell, R., Ullrich, M., Wagner, M. N., Wasem, T., Rosner, G., Apostolou, A., Lemmens, P. J., Tiemens, M., van der Weele, J. C., Cebulla, A., Kleines, H., Pütz, J., Sefzick, T., Stockmanns, T., Wintz, P., Karavdina, A., Merkel, H., Sanchez, S., Ahmed, S., Capozza, L., Jasinski, P., Khaneft, D., Klasen, R., Lin, D., Pflüger, S., Malyshev, O., Datar, V., Parmar, A., Roy, B., Grieser, S., Kravchenko, E. A., Kuyanov, I. A., Atomssa, E., Ramstein, B., van de Wiele, J., Boca, G., Costanza, S., Melnik, Y., Mochalov, V., Nogach, L., Ryzhikov, S., Belostotski, S., Manaenkov, S., Rai, A. K., De Remigis, P., Giraudo, G., Mignone, M., Iazzi, F., Amoroso, A., De Mori, F., Lavezzi, L., Martin, A., Diaz, J., Pothodi Chackara, V., Slowinski, B., Steinschaden, D.

    “…Simulation results for future measurements of electromagnetic proton form factors at $\overline{\rm P}$ANDA (FAIR) within the PandaRoot software framework are…”
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  20. 20

    Designing the system to measure the depth-dose profile of a proton beam using CsI(Tl) scintillator by Boontueng, P, Ritjoho, N, Phumara, P, Sanghangthum, T, Thongjerm, P, Wonglee, S, Pornroongruengchok, W, Kobdaj, C

    Published 15-05-2024
    “…In this work, the standard CsI(Tl) scintillator was used to determine the characteristics of a proton beam. By irradiating the scintillator with a proton beam,…”
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