Pubblicazioni
ELENCO DELLE PUBBLICAZIONI ISI:
[1] A.Bhatti and al., "The CDF Level 2 calorimeter trigger upgrade". IEEE Transaction on Nuclear Science, Volume 56, Issue 3, (2009), pp 1685-1689.
[2] A.Bhatti and al., "The CDF Level 2 calorimeter trigger upgrade". Nuclear Instruments Methods (NIM) in Physics Research A, Volume 598, Issue 1 (2009), pp 331-333.
[3] A.Bhatti and al. "eXtremely Fast Tracker trigger upgrade at CDF" Nuclear Instruments Methods (NIM) in Physics Research A, Volume 598, Issue 1 (2009), pp 328-330.
[4] S.Amerio and al., "The GigaFitter for fast track fitting based on FPGA DSP arrays" Nuovo Cimento B, Vol 122, Issue 6-7 (2007), pp 649-654.
[5] J.Adelman and al. "On-line tracking processors at hadron colliders: The SVT expereince at CDF II and beyond" Nuclear Instruments Methods (NIM) in Physics Research A, Volume 581, Issue 1 (2007), pp 473-475.
[6] J.Adelman and al., "The Silicon Vertex Trigger upgrade at CDF" Nuclear Instruments and Methods (NIM) in Physics Research A, Volume 572, Issue 1 (2007), pp 361-364.
[7] J.Adelman and al., "Real time secondary vertexing at CDF" Nuclear Instruments and Methods (NIM) in Physics Research A, Volume 569, Issue 1 (2006), pp 111-114.
[8] A.Annovii and al., "The AM++ Board for Silicon Vertex Tracker Upgrade at CDF". IEEE Transaction on Nuclear Science, Volume 53, Issue 3, Part 3, (2006), pp 1726-1731.
[9] A.Annovi and al., "A VLSI Processor for Fast Track Finding Based on Content Addressable Memories" IEEE Transaction on Nuclear Science, Volume 53, Issue 4, Part 3 (2006), pp. 2428-2433.
[10] The APE collaboration, "The apeNEXT project". Nuclear Phyiscs B-Proceeding Supplements, Volume 140 (2005), pp. 176-182.
[11] R.Ammendola and al., "Status of the apeNEXT project". Nuclear Phyiscs B-Proceeding Supplements, Volume 119 (2003), pp. 1038-1040.
[12] E.Calzavarini and al., "Matched filters for coalescing binaries detection on massively parallel computers". Computer Physics Communications, Volume 152, Issue 3 (2003), pp. 295-306.
[13] F.Bodin and al., "APE computers: past, present and future". Computer Physics Communications, Volume 147, Issue 1-2 (2002), pp 402-409.
[14] A. Bartoloni and al., "Status of APEmille". Nuclear Physics B-Proceedings Supplements, Volume 106, (2002), pp 1043-1045.
[15] F.Bodin and al., "The apeNEXT project". Nuclear Phyiscs B-Proceeding Supplements, Volume 106 (2002), pp. 173-176.
[16] R.Alfieri and al., "Status of APE project". Nuclear Phyiscs B-Proceeding Supplements, Volume 94 (2001), pp. 846-853.
[17] A.Cotta Ramusino and al., "Low-noise front-end amplifier and channel encoder for a 2-D X-ray digital imaging system with single photon counting capability" Nuclear Instruments and Methods (NIM) A in Physics Research, Volume 460, Issue 1 (2001), pp 213-220.
[18] N. Belcari and al., "Measurement of photoelectron yield from scintillating fibres coupled to a YAP: Ce matrix", Nuclear Instruments and Methods (NIM) in Physics Research A, Volume 461, Issue 1-3 (2001), pp 413-415.
[19] A. Del Guerra and al., "An integrated PET-SPECT small animal imager preliminary results", IEEE Transaction on Nuclear Science, Volume 47, Issue 4 (2000), pp 1573-1540.
[20] G. Di Domenico and al., "A small animal hybrid PET-SPECT scanner: First in-vivo results", Journal of Nuclear Medicine, Volume 41, Issue 5, Supplements S (2000), pp 19P-19P.