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pro vyhledávání: '"Samarati J."'
Autor:
Flöthner, K. J., Scharenberg, L., Brask, A., Brunbauer, F., Garcia, F., Janssens, D., Ketzer, B., Lisowska, M., Muller, H., Oliveri, E., Orlandini, G., Pfeiffer, D., Ropelewski, L., Samarati, J., Van Stenis, M., Veenhof, R.
Gas Electron Multipliers (GEMs) are used in many particle physics experiments, employing their 'standard' configuration with amplification holes of 140 um pitch in a hexagonal pattern. However, the collection of the charge cloud from the primary ioni
Externí odkaz:
http://arxiv.org/abs/2406.05836
Autor:
Scharenberg, L., Brunbauer, F., Danielson, H., Fang, Z., Flöthner, K. J., Garcia, F., Janssens, D., Lisowska, M., Liu, J., Lyu, Y., Mehl, B., Muller, H., de Oliveira, R., Oliveri, E., Orlandini, G., Pfeiffer, D., Pizzirusso, O., Ropelewski, L., Samarati, J., Shao, M., Teixeira, A., Van Stenis, M., Veenhof, R., Zhang, Z., Zhou, Y.
Micro-Pattern Gaseous Detectors (MPGDs) with resistive anode planes provide intrinsic discharge robustness while maintaining good spatial and time resolutions. Typically read out with 1D strips or pad structures, here the characterisation results of
Externí odkaz:
http://arxiv.org/abs/2402.03899
Autor:
Flöthner, K. J., Brunbauer, F., Ferry, S., Garcia, F., Janssens, D., Ketzer, B., Lisowska, M., Muller, H., de Oliveira, R., Oliveri, E., Orlandini, G., Pfeiffer, D., Ropelewski, L., Samarati, J., Sauli, F., Scharenberg, L., van Stenis, M., Utrobicic, A., Veenhof, R.
Removing ambiguities within a single stage becomes crucial when one can not use multiple detectors behind each other to resolve them which naturally is the case for neutral radiation. An example would be RICH detectors. Commonly pixilated readout is
Externí odkaz:
http://arxiv.org/abs/2303.18105
Autor:
Scharenberg, L., Bortfeldt, J., Brunbauer, F., Desch, K., Flöthner, K., Garcia, F., Janssens, D., Lisowska, M., Muller, H., Oliveri, E., Orlandini, G., Pfeiffer, D., Ropelewski, L., Samarati, J., Sorvisto, D., van Stenis, M., Veenhof, R.
The RD51 collaboration maintains a common infrastructure at CERN for its R & D activities, including two beam telescopes for test beam campaigns. Recently, one of the beam telescopes has been equipped and commissioned with new multi-channel and charg
Externí odkaz:
http://arxiv.org/abs/2302.08330
Autor:
Pfeiffer, D., Brunbauer, F., Hall-Wilton, R., Lupberger, M., Marko, M., Muller, H., Oksanen, E., Oliveri, E., Ropelewski, L., Rusu, A., Samarati, J., Scharenberg, L., van Stenis, M., Thuiner, P., Veenhof, R.
The European Spallation Source (ESS) in Lund, Sweden will become the world's most powerful thermal neutron source. The Macromolecular Diffractometer (NMX) at the ESS requires three 51.2 x 51.2~cm$^{2}$ detectors with reasonable detection efficiency,
Externí odkaz:
http://arxiv.org/abs/2211.04335
Autor:
O'Hare, C. A. J., Loomba, D., Altenmüller, K., Álvarez-Pol, H., Amaro, F. D., Araújo, H. M., Sierra, D. Aristizabal, Asaadi, J., Attié, D., Aune, S., Awe, C., Ayyad, Y., Baracchini, E., Barbeau, P., Battat, J. B. R., Bell, N. F., Biasuzzi, B., Bignell, L. J., Boehm, C., Bolognino, I., Brunbauer, F. M., Caamaño, M., Cabo, C., Caratelli, D., Carmona, J. M., Castel, J. F., Cebrián, S., Cogollos, C., Collison, D., Costa, E., Dafni, T., Dastgiri, F., Deaconu, C., De Romeri, V., Desch, K., Dho, G., Di Giambattista, F., Díez-Ibáñez, D., D'Imperio, G., Dutta, B., Eldridge, C., Elliott, S. R., Ezeribe, A. C., Fava, A., Felkl, T., Fernández-Domínguez, B., Ribas, E. Ferrer, Flöthner, K. J., Froehlich, M., Galán, J., Galindo, J., García, F., Pascual, J. A. García, Gelli, B. P., Ghrear, M., Giomataris, Y., Gnanvo, K., Gramellini, E., Di Cortona, G. Grilli, Hall-Wilton, R., Harton, J., Hedges, S., Higashino, S., Hill, G., Holanda, P. C., Ikeda, T., Irastorza, I. G., Jackson, P., Janssens, D., Jones, B., Kaminski, J., Katsioulas, I., Kelly, K., Kemmerich, N., Kemp, E., Korandla, H. B., Kraus, H., Lackner, A., Lane, G. J., Lewis, P. M., Lisowska, M., Luzón, G., Lynch, W. A., Maccarrone, G., Mack, K. J., Majewski, P. A., Mano, R. D. P., Margalejo, C., Markoff, D., Marley, T., Marques, D. J. G., Massarczyk, R., Mazzitelli, G., McCabe, C., McKie, L. J., McLean, A. G., McNamara, P. C., Mei, Y., Messina, A., Mills, A. F., Mirallas, H., Miuchi, K., Monteiro, C. M. B., Mosbech, M. R., Muller, H., da Luz, H. Natal, Nakamura, K. D., Natochii, A., Neep, T., Newstead, J. L., Nikolopoulos, K., Obis, L., Oliveri, E., Orlandini, G., de Solórzano, A. Ortiz, von Oy, J., Papaevangelou, T., Pérez, O., Perez-Gonzalez, Y. F., Pfeiffer, D., Phan, N. S., Piacentini, S., Olloqui, E. Picatoste, Pinci, D., Popescu, S., Prajapati, A., Queiroz, F. S., Raaf, J. L., Resnati, F., Ropelewski, L., Roque, R. C., Ruiz-Choliz, E., Rusu, A., Ruz, J., Samarati, J., Santos, E. M., Santos, J. M. F. dos, Sauli, F., Scharenberg, L., Schiffer, T., Schmidt, S., Scholberg, K., Schott, M., Schueler, J., Segui, L., Sekiya, H., Sengupta, D., Slavkovska, Z., Snowden-Ifft, D., Soffitta, P., van Stenis, M., Spooner, N. J. C., Strigari, L., Stuchbery, A. E., Sun, X., Torelli, S., Tilly, E. G., Thomas, A. W., Thorpe, T. N., Urquijo, P., Utrobičić, A., Vahsen, S. E., Veenhof, R., Vogel, J. K., Williams, A. G., Wood, M. H., Zettlemoyer, J.
Recoil imaging entails the detection of spatially resolved ionization tracks generated by particle interactions. This is a highly sought-after capability in many classes of detector, with broad applications across particle and astroparticle physics.
Externí odkaz:
http://arxiv.org/abs/2203.05914
Autor:
Pfeiffer, D., Scharenberg, L., Schwäbig, P., Alcock, S., Brunbauer, F., Christensen, M. J., Desch, K., Flöthner, K., Garcia, F., Hall-Wilton, R., Hracek, M., Iakovidis, G., Janssens, D., Kaminski, J., Lupberger, M., Muller, H., Oliveri, E., Ropelewski, L., Rusu, A., Samarati, J., van Stenis, M., Utrobicic, A., Veenhof, R.
The VMM3a is an Application Specific Integrated Circuit (ASIC), specifically developed for the readout of gaseous detectors. Originally developed within the ATLAS New Small Wheel (NSW) upgrade, it has been successfully integrated into the Scalable Re
Externí odkaz:
http://arxiv.org/abs/2109.10287
Autor:
Garcia, F., Brunbauer, F. M., Lisowska, M., Müller, H., Oliveri, E., Pfeiffer, D., Ropelewski, L., Samarati, J., Sauli, F., Scharenberg, L., Silva, A. L. M., van Stenis, M., Veenhof, R., Veloso, J. F. C. A.
The performance of a Thick-COBRA (THCOBRA) gaseous detector is studied using an optical readout technique. The operation principle of this device is described, highlighting its operation in a gas mixture of Ar/CF4 (80/20%) for visible scintillation l
Externí odkaz:
http://arxiv.org/abs/2007.12621
Autor:
Flöthner, K.J., Janssens, D., Brunbauer, F., Ferry, S., Ketzer, B., Lisowska, M., Muller, H., de Oliveira, R., Oliveri, E., Orlandini, G., Pfeiffer, D., Samarati, J., Ropelewski, L., Sauli, F., Scharenberg, L., van Stenis, M., Utrobicic, A., Veenhof, R.
Publikováno v:
In Nuclear Inst. and Methods in Physics Research, A July 2023 1052
Akademický článek
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