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Page 1: Pubblicazioni del Dr. Paolo W. Cattaneofisica.unipv.it/personale/PersFiles/Publ_400.pdf · Pubblicazioni del Dr. Paolo W. Cattaneo [1] H. Becker et al., Readout of double-sided silicon

Pubblicazioni del Dr. Paolo W. Cattaneo

[1] H. Becker et al., Readout of double-sided silicon strip detectors with highdensity detectors with high density integrated electronics, IEEE Trans. onNucl. Sci. Vol.36, No.1 (1989) 246, doi:10.1109/23.34443

[2] W. Buttler et al., Noise performance and radiation hardness of the CAMEX64analog multiplexing readout chip, Contribution to the XXIV Internationalconference on high energy physics, August 4–10, 1988, Munich

[3] W. Buttler et al., A low noise-low power CMOS chip for readout of siliconstrip detectors, ICFA Instrumentation bulletin, No.5 September 1988

[4] L. Struder et al., The MPI/AIT X-ray imager (MAXI) high speed pn-CCD’sfor X-ray detection, Contribution to the 5th European symposium on semicon-ductor devices, February 21-23 in Munich, Nucl. Instr. & Meth. A 288 (1990)227-235

[5] H. Becker et al., New development in double sided silicon strip detectors, IEEETrans. on Nucl. Sci. Vol.37, No.2 (1990) 101, doi:10.1109/23.106599

[6] L. Struder et al., Recent development in semiconductor detectors and On-Chipelectronics, Invited talk given at the V th Vienna Wire Chamber Conference,Vienna, 16. Feb. 1989, Nucl. Instr. & Meth. A 283 (1989) 387-398

[7] P.W. Cattaneo, Tesi di Laurea (english translation), Model analysis and ex-perimental characterization of a microstrip vertex detector for a e+-e− collider,MPI-PAE/Exp. El. 210 September 1989

[8] P.W. Cattaneo, Capacitance calculation in a microstrip detector and its ap-plication to signal processing, Nucl. Instr. & Meth. A 295 (1990) 207-218

[9] P.W. Cattaneo, Calibration procedure for irradiation tests on silicon devices,MPI-PAE/Exp. El. 223 May 1990 and IEEE Trans. on Nucl. Sci. Vol.38,

No.3 (1991) 894 doi:10.1109/23.81690

[10] P.W. Cattaneo et al., Radiation hardness tests on the read out electronics chainof the ALEPH minivertex detector, Contribution to the 2nd InternationalConference on advanced technology and particle physics, Como, Italy, 11-15June 1990, Nucl. Phys. B (Proc. Suppl.) 23A (1991) 313-318

[11] G. Batignani et al., The ALEPH silicon vertex detector, Contribution to the2nd International Conference on advanced technology and particle physics,Como, Italy, 11-15 June 1990, Nucl. Phys. B (Proc. Suppl.) 23A (1991) 291-296

Page 2: Pubblicazioni del Dr. Paolo W. Cattaneofisica.unipv.it/personale/PersFiles/Publ_400.pdf · Pubblicazioni del Dr. Paolo W. Cattaneo [1] H. Becker et al., Readout of double-sided silicon

[12] P.W. Cattaneo, Radiation hardness of semiconductor detectors and read outelectronics for the ALEPH minivertex detector, Contribution to the ECFALarge Hadron Collider Workshop, Aachen, BRD, 4-9 October 1990, Proceed-ing published in CERN 90-10, ECFA 90-133 Volume III, pp.749-757 (1990),Editors: G.Jarlskog, D. Rein

[13] B. Lofstedt et al., A digital front-end and readout microsystem for Calorimetryat LHC, CERN-DRDC/90-74, DRDC/P 19 (1990).

[14] P.W. Cattaneo, The effect of velocity saturation on the shape of the currentsignals in silicon detectors, Nucl. Instr. & Meth. A 311 (1992) 573-579

[15] G. Batignani et al., Operational experience with a large detector system usingsilicon strip detectors with double sided readout, Contribution to Sixth Eu-ropean Symposium on semiconductor detectors, Milan, Italy, February 24-26,1992, Nucl. Instr. & Meth. A 326 (1993) 183.

[16] S. Berglund et al., Status report on the FERMI project, A digital front-endand readout microsystem for Calorimetry at LHC, CERN-DRDC/92-26, RD-16 (1992).

[17] ALEPH Collaboration, Alignement of the ALEPH tracking devices, Proceed-ing of the 1992 Wire Chamber Conference (Wien), Nucl. Instr. & Meth. A323 (1992) 213-217.

[18] A. Dell’acqua et al., Status report on the FERMI project, A digital front-end and readout microsystem for Calorimetry at LHC, CERN-DRDC/93-21,RD-16 (1993).

[19] A. Dell’acqua et al., A digital front-end and readout microsystem for calorime-try at LHC, IEEE Trans. on Nucl. Sci. Vol.40, No.4, (1993) 516-531doi:10.1109/23.256611

[20] A. Dellacqua et al., System Level Policies for Fault Tolerance Issues in theFERMI Project, Proceeding of The IEEE International Workshop on Defectand Fault Tolerance in VLSI Systems, Venice (1993), pp. 1-8, Published bythe IEEE Computer Society Press.

[21] P.W. Cattaneo on behalf of the FERMI collaboration, A digital front-end andreadout microsystem for calorimetry at LHC: a progress report, Proceedingof the fourth international conference on Calorimetry in High Energy Physics(1994), World Scientific.

[22] J. Badier et al., Test results of an electromagnetic calorimeter with 0.5 mmscintillating fibers readout, Nucl. Instr. & Meth. A 337 (1994) 314-325.

[23] J. Badier et al., Test results of a fully projective lead/scintillating fibercalorimeter, Nucl. Instr. & Meth. A 337 (1994) 326-341.

Page 3: Pubblicazioni del Dr. Paolo W. Cattaneofisica.unipv.it/personale/PersFiles/Publ_400.pdf · Pubblicazioni del Dr. Paolo W. Cattaneo [1] H. Becker et al., Readout of double-sided silicon

[24] W. W. Armstrong et al., ATLAS: Technical proposal for a general-purposep p experiment at the Large Hadron Collider at CERN, CERN-LHCC-94-43(1994).

[25] R. Benetta et al., Status report on the FERMI project, A digital front-endand readout microsystem for Calorimetry at LHC, CERN-DRDC/94-17, RD-16 (1994).

[26] P.W. Cattaneo, The effect of velocity saturation on the shape of current signalsin germanium cylindrical detectors, Nucl. Instr. & Meth. A 343 (1994) 583-587

[27] C. Alippi et al., A digital front-end and readout microsystem for calorimetryat LHC, Nucl. Instr. & Meth. A 344 (1994) 180-184

[28] A. Dell’Acqua et al., A new generation of electronic modules for large dataacquisition array required for high energy physics, IEEE Transaction on Com-ponents, Packaging, and Manifacturing Technology, Part B: Advanced Pack-aging, Vol.17, No.3, (1994) 302-309

[29] H. Alexanian et al., FERMI: a digital Front End and Readout MIcrosystemfor high resolution calorimetry, Nucl. Instr. & Meth. A 357 (1995) 306-317.

[30] H. Alexanian et al., Optimized digital feature extraction in the FERMI mi-crosystem, Nucl. Instr. & Meth. A 357 (1995) 318-328.

[31] R. Benetta et al., Status report on the FERMI project, A digital front-endand readout microsystem for Calorimetry at LHC, CERN/LHCC/95-28, RD-16 (1995).

[32] P.W. Cattaneo, Noise and signal processing in a microstrip detector with atime variant readout system, Nucl. Instr. & Meth. A 359 (1995) 551-558.

[33] P.W. Cattaneo, Tesi di Dottorato, Measurement of the b hadron lifetime withthe dipole method at the ALEPH experiment, Dissertation : Univ. Munchen,MPI-PhE-95-21 EX-MPI-PhE-95-21 (1995).

[34] D. Autiero et al., A high stability light emitting diode system for monitoringlead glass electromagnetic calorimeters, Nucl. Instr. & Meth. A 372 (1996)556-561.

[35] P.W. Cattaneo, Optimum FIR filter for sampled signals in presence of jitter,Nucl. Instr. & Meth. A 373 (1996) 93-96.

[36] D. Autiero et al., The electromagnetic calorimeter of the NOMAD experiment,Nucl. Instr. & Meth. A 373 (1996) 358-373.

[37] B. Mours et al., The design construction and performance of the ALEPHsilicon vertex detector, Nucl. Instr. & Meth. A 379 (1996) 101-115.

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[38] J. Altegoer et al., [NOMAD Collaboration] The NOMAD experiment at theCERN SPS, Nucl. Instr. & Meth. A 404 (1998) 96-128.

[39] Z. Ajaltouni et al., Evaluation of Fermi read-out of the Atlas Tilecal prototype,Nucl. Instr. & Meth. A 403 (1998) 98-114.

[40] G. Baroni et al., New methods for patient alignement, Second InternationalSymposium on Hadrontherapy (9-11) September 1996, PSI-CERN, ExcerptaMedica, International Congress Series 1144 (1997).

[41] D. Autiero et al., Test beam performance of the electromagnetic calorimeterof the NOMAD experiment, Nucl. Instr. & Meth. A 387 (1997) 352.

[42] D. Autiero et al., A study of the transverse fluctuations of hadronic showers inthe NOMAD electromagnetic calorimeter, Nucl. Instr. & Meth. A 411 (1998)285.

[43] J. Altegoer et al., [NOMAD Collaboration] Search for a new gauge boson inπ0 decays, Phys. Lett. B 428 (1998) 197.

[44] J. Altegoer et al., [NOMAD Collaboration] A search for νµ to ντ oscillationsusing the NOMAD detector, Phys. Lett. B 431 (1998) 219.

[45] P.W. Cattaneo, A technique for shape reconstruction for nuclear electronicsignals in sampled systems, Signal Processing Vol.72, No. 2 (1999) 117.

[46] D. Autiero et al., Parametrization of e and γ initiated showers in the NOMADlead-glass calorimeter, Nucl. Instr. & Meth. A 425 (1999) 188.

[47] J. Altegoer et al., [NOMAD Collaboration] Precision measurement of scaledmomentum, charge multiplicity and thrust in νµ N and νµ N interactions,Phys. Lett. B 445 (1999) 439.

[48] P.W. Cattaneo, Decay width in e+e− of a new light gauge boson, NuovoCimento A, Vol. 111 No. 12 (1998).

[49] P. Astier et al., [NOMAD Collaboration] A more sensitive search for νµ to ντ

oscillations in NOMAD, Phys. Lett. B453 (1999) 169.

[50] P.W. Cattaneo et al., Experimental results of fast X-ray imaging with a siliconpixel detector for the feasibility of an automatic tumor X-ray survey an dtracking system, INFN/TC-99/23 (1999).

[51] P.W. Cattaneo, Application of the bilinear compression function to calorime-try, Nucl. Instr. & Meth. A 440 (2000) 245.

[52] P. Astier et al., [NOMAD Collaboration] Limit on νe to ντ oscillations fromthe NOMAD experiment, Phys. Lett. B471 (2000) 406.

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[53] P. Astier et al., [NOMAD Collaboration] Search for eV (pseudo)scalar pene-trating particles in the SPS neutrino beam, Phys. Lett. B 479 (2000) 371-380.

[54] P. Astier et al., [NOMAD Collaboration] Updated Results from the ντ Apper-ance Search in NOMAD, Phys. Lett. B483 (2000) 387-404.

[55] P. Astier et al., [NOMAD Collaboration] Neutrino Production of OppositeSign Dimuons in the NOMAD Experiment, Phys. Lett. B486 (2000) 35-48.

[56] P. Astier et al., [NOMAD Collaboration] Measurement of the Λ Polarizationin νµ Charged Current Interactions in the NOMAD Experiment, Nucl. Phys.B 588 (2000) 3-36.

[57] P. Astier et al., [NOMAD Collaboration] Search for heavy neutrinos mixingwith τ neutrinos, Phys. Lett. B506 (2001) 27-36.

[58] P.W. Cattaneo, Optimization of the multilinear compression function appliedto calorimetry, Nucl. Instr. & Meth. A 479 (2002) 599-602

[59] S. Argiro et al., The analog signal processing system for the Auger fluorescencedetector prototype, Presented at the Nuclear Science Symposium 2000, IEEETrans. on Nucl. Sci. Vol.48, No.3, (2001) 444-449 doi:10.1109/23.940097

[60] S. Argiro et al., The Analog Signal Processor of the Auger Fluorescence De-tector Prototype, Nucl. Instr. & Meth. A 461 (2001) 440.

[61] P. Astier et al., [NOMAD Collaboration] Measurement of the Λ Polarizationin νµ Charged Current Interactions in the NOMAD Experiment, Nucl. Phys.B 605 (2001) 3-14.

[62] P.W. Cattaneo, The anti-aliasing requirements for amplitude measurementsin sampled systems, Nucl. Instr. & Meth. A 481 (2002) 632-636.

[63] P.W. Cattaneo, Optimal measurement of signal over noise ratio with con-strained filter transfer functions, Nucl. Instr. & Meth. A480 (2002) 726-728.

[64] P.W. Cattaneo, A technique based on pulse shape comparison for linearizingcompressed signals, Nucl. Instr. & Meth. A 481 (2002) 529-537.

[65] P. Astier et al., [NOMAD Collaboration] Inclusive production of ρ0(770),f0(980) and f2(1270) mesons in νµ charged current interactions, Nucl. Phys.B 601 (2001) 3-23.

[66] P. Astier et al., [NOMAD Collaboration] A study of backward going p and π−

in νµ CC Interactions with the NOMAD detector, Nucl. Phys. B 609 (2001)255-279.

[67] P.W. Cattaneo, The anti-aliasing requirements for area and timing measure-ments in sampled systems, Signal Processing Vol.82, No. 3 (2002) 407-416.

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[68] P. Astier et al., [NOMAD Collaboration] Final NOMAD results on νµ →

ντ and νe → ντ oscillations including a new search for ντ appearance usinghadronic τ decays, Nucl. Phys. B 611 (2001) 3-39.

[69] P. Astier et al., [NOMAD Collaboration] A Study of Strange Particle Produc-tion in νµ Charged Current Interactions in the NOMAD Experiment, Nucl.Phys. B 621 (2002) 3-34.

[70] P. Astier et al., [NOMAD Collaboration] Study of D∗

+ production in νµ chargedcurrent interactions in the NOMAD experiment, Phys. Lett. B526 (2002) 278-286.

[71] P. Astier et al., [NOMAD Collaboration] New results on a search for a33.9 MeV/c2 neutral particle from p+ decay in the NOMAD experiment,Phys. Lett. B527 (2002) 23-28.

[72] A. Baldini et al., The MEG experiment: search for the µ+→ e+γ decay at

PSI, Research Proposal to INFN (2002)

[73] J. Abraham et al., Properties and performance of the prototype instrumentfor the Pierre Auger Observatory, Nucl. Instr. & Meth. A 523 (2004) 50.

[74] P. Astier et al. [NOMAD Collaboration], Prediction of neutrino fluxes in theNOMAD experiment, Nucl. Instr. & Meth. A 515 (2003) 800.

[75] P. Astier et al. [NOMAD Collaboration], Bose-Einstein correlations in chargedcurrent muon-neutrino interactions in the NOMAD experiment at CERN,Nucl. Phys. B 686 (2004) 3

[76] P. Astier et al. [NOMAD Collaboration], Search for νµ → νe oscillations in theNOMAD experiment, Phys. Lett. B570 (2003) 19

[77] D. Naumov et al. [NOMAD Collaboration], A study of strange particles pro-duced in neutrino neutral current interactions in the NOMAD experiment,Nucl. Phys. B 700 (2004) 51

[78] S. Hasan et al. A Photon Tag Calibration Beam for the AGILE Satellite,LNF-05/24(IR), (2005)

[79] A. Chukanov et al. [NOMAD Collaboration], Production properties ofK*(892)+- vector mesons and their spin alignment as measured in the NO-MAD experiment, Eur. Phys. J. C 46 (2006) 69-79

[80] O. Samoylov et al. [NOMAD Collaboration], Search for the exotic resonanceΘ+ in the NOMAD experiment, Eur. Phys. J. C 49 (2007) 499-510

[81] Q. Wu et al. [NOMAD Collaboration], A Precise measurement of the muonneutrino-nucleon inclusive charged current cross-section off an isoscalar targetin the energy range 2.5 ¡ E(nu) ¡ 40-GeV by NOMAD, Phys. Lett. B660 (2008)19

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[82] A. Bulgarelli et al. [AGILE Collaboration] Long-term AGILE monitoring ofthe puzzling gamma-ray source 3EG J1835+5918, Astron. & Astrophys. 4892 (2008) L17-L20, doi: 10.1051/0004-6361/200810711

[83] A. Chen et al. [AGILE Collaboration] AGILE detection of variable gamma-rayactivity from the blazar S5 0716+714 in September-October 2007, Astron. &Astrophys. 489 3 (2008) L37-L40, doi: 10.1051/0004-6361/200810553

[84] A. Giuliani et al. [AGILE Collaboration] AGILE detection of delayed gamma-ray emission from GRB 080514B Astron. & Astrophys. 491 2 (2008) L25-L28,doi: 10.1051/0004-6361/200810737

[85] S. Vercellone et al. [AGILE Collaboration] Multiwavelength observations of3C 454.3. I. The AGILE 2007 November campaign on the ”Crazy Diamond”,Astrophys. J. 690 (2009) 1018-1030, doi: :10.1088/0004-637X/690/1/1018

[86] M. Marisaldi et al. [AGILE Collaboration] Gamma-ray burst detection withthe AGILE mini-calorimeter, Astron. & Astrophys. 490 3 (2008) 1151-1156,doi: 10.1051/0004-6361/200810562

[87] A. Pellizoni et al. [AGILE Collaboration] High-Resolution Timing Observa-tions of Spin-Powered Pulsars with the AGILE Gamma-Ray Telescope, Astro-phys. J. 691 2 (2009) 1618-1633, doi: 10.1088/0004-637X/691/2/1618

[88] G. Pucella et al. [AGILE Collaboration] AGILE detection of intense gamma-ray emission from the blazar PKS 1510-089, Astron. & Astrophys. 491 2 (2008)L21-L24, doi: 10.1051/0004-6361/200810594

[89] A. Giuliani et al. [AGILE Collaboration] AGILE observation of a gamma-rayflare from the blazar 3C 279, Astron. & Astrophys. 494 2 (2009) 509-513, doi:10.1051/0004-6361/200810785

[90] L. Pacciani et al. [AGILE Collaboration] High energy variability of 3C 273 dur-ing the AGILE multiwavelength campaign of December 2007 - January 2008,Astron. & Astrophys. 494 1 (2009) 49-61, doi: 10.1051/0004-6361/200810813

[91] M. Tavani et al. [AGILE Collaboration] The AGILE mission, Astron. & As-trophys. 502 3 (2009) 995-1013, doi: 10.1051/0004-6361/200810527

[92] I. Donnarumma et al. [AGILE Collaboration] The June 2008 flare of Markarian421 from optical to TeV energies, Astrophys. J. Lett. 691 1 (2009) L13-L19,doi: 10.1088/0004-637X/691/1/L13

[93] C. Pittori et al. [AGILE Collaboration] First AGILE Catalog of High Con-fidence Gamma-Ray Sources, Astron. & Astrophys. 506 3 (2009) 1563-1574,doi: 10.1051/0004-6361/200911783, arXiv:0902.2959[astro-ph.HE]

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[94] A. Pellizzoni et al. [AGILE Collaboration] Discovery of new gamma-ray pulsarswith AGILE, Astrophys. J. Lett. 695 1 (2009) L115-L118, doi: 10.1088/0004-637X/695/1/L115, arXiv:0903.0087[astro-ph.HE]

[95] M. Tavani et al. [AGILE Collaboration] Detection of Gamma-ray Emissionfrom the Eta-Carinae Region, Astrophys. J. Lett. 698 2 (2009) L142-L146,doi: 10.1088/0004-637X/698/2/L142, arXiv:0904.2736[astro-ph.HE]

[96] P. W. Cattaneo, Lepton Flavor Violation perspectives beyond MEG, Nucl.Phys. B (Proc. Suppl.) 188 (2009) 351-353

[97] V. Lyubushkin et al. [NOMAD Collaboration], A Study of quasi-elastic muonneutrino and antineutrino scattering in the NOMAD experiment, Eur. Phys.J. C 63 (2009) 355-381

[98] A. Giuliani et al. [AGILE Collaboration] AGILE detection of delayedgamma-ray emission from the short gamma-ray burst GRB 090510, As-trophys. J. Lett. 708 (2010) L84-L88, doi: 10.1088/2041-8205/708/2/L84,arXiv:0908.1908[astro-ph.HE].

[99] M. Feroci et al. [AGILE Collaboration] Monitoring the hard X-ray skywith SuperAGILE, Astron. & Astrophys. 510 (2010) A9, doi: 10.1051/0004-6361/200912972, arXiv:0910.4895[astro-ph.HE]

[100] P. W. Cattaneo, Optical analysis of mirrors of telescopes: the lens-less Schimdt case, Nucl. Instr. & Meth. A 608 (2009) 384-389,doi:10.1016/j.nima.2009.07.032 , arXiv:0908.3646[astro-ph.IM]

[101] E. Del Monte et al. [AGILE Collaboration] The observation of gamma raybursts and terrestrial gamma-ray flashes with AGILE, Nucl. Instr. & Meth. A630 (2011), 155-158, doi:10.1016/j.nima.2010.06.050, arXiv:1112.2865[astro-ph.HE].

[102] S. Sabatini et al. [AGILE Collaboration] Galactic sources science with AGILE:The case of the Carina Region, Nucl. Instr. & Meth. A 630 (2011), 193-197,doi:10.1016/j.nima.2010.06.062, arXiv:1202.0444[astro-ph.HE].

[103] L. Pacciani et al. [AGILE Collaboration] The flaring blazars of the first 1.5years of the AGILE mission, Nucl. Instr. & Meth. A 630 (2011), 198-201,doi:10.1016/j.nima.2010.06.063, arXiv:1112.4302[astro-ph.HE].

[104] A. Rappoldi et al. [AGILE Collaboration] Preliminary results on TeVsources search with AGILE, Nucl. Instr. & Meth. A 630 (2011) 202-205,doi:10.1016/j.nima.2010.06.065.

[105] P. W. Cattaneo et al. [AGILE Collaboration] First results about on-groundcalibration of the Silicon Tracker for the AGILE satellite, Nucl. Instr. & Meth.A 630 (2011) 251-257, doi:10.1016/j.nima.2010.06.078, arXiv:1112.2600[astro-ph.HE].

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[106] M. Marisaldi et al. [AGILE Collaboration] Detection of Terrestrial Gamma-Ray Flashes up to 40 MeV by the AGILE satellite, J. Geophys. Res., 115(2010) A00E13, ISSN 0148-0227, doi:10.1029/2009JA014502

[107] J. Adam et al. [MEG Collaboration] A limit for the µ → e+γdecay from the MEG experiment, Nucl. Phys. B 834 (2010) 1-12,doi:10.1016/j.nuclphysb.2010.03.030, arXiv:0908.2594[hep-ex]

[108] S. Dussoni, M. De Gerone, F. Gatti, R. Valle, M. Rossella, R. Nard, P.W.Cattaneo, The Timing Counter of the MEG experiment: Design and commis-sioning, doi:10.1016/j.nima.2009.08.089, Nucl. Instr. & Meth. A617 (2009)387-390, arXiv:1002.3493[physics.ins-det].

[109] F. D’Ammando et al. [AGILE Collaboration] AGILE detection of a rapidgamma-ray flare from the blazar PKS 1510-089 during the GASP-WEBTmonitoring, Astron. & Astrophys. 508 1 (2009) 181-189, doi: 10.1051/0004-6361/200912560, arXiv:0909.3484 [astro-ph.HE].

[110] E. Del Monte et al. [AGILE Collaboration] A year-long AGILE observation ofCygnus X-1 in hard spectral state, Astron. & Astrophys. 520 A67 (2010), doi:10.1051/0004-6361/200913104, arXiv:1004.0849[astro-ph.HE]

[111] P. W. Cattaneo, The MEG spectrometer at PSI, Contribution to the1st International Conference on Technology Instrumentation to ParticlePhysics, Tsukuba, 2009, Nucl. Instr. & Meth. A 623 (2010) 350-352,doi:10.1016/j.nima.2010.02.245, arXiv:0909.0199 [physics.ins-det].

[112] P. W. Cattaneo, Capacitance and electric field analytical calculations in stripsemiconductor detectors, Contribution to the 11th European Symposium onSemiconductor Detectors, Wildbad Kreuth, 2009, To be published in Nucl.Instr. & Meth. A

[113] P.W. Cattaneo, Capacitances in micro-strip detectors: a conformalmapping approach, Solid State Electronics 54 (2010) 252-258, doi:10.1016/j.sse.2009.09.030, arXiv:0909.3024 [physics.ins-det].

[114] V.A. Acciari et al. [VERITAS Collaboration,AGILE Collaboration] Multi-wavelength observations of a TeV-Flare from W Comae, Astrophys. J. 707(2009) 612-620, doi: 10.1088/0004-637X/707/1/612, arXiv:0910.3750 [astro-ph.HE].

[115] I. Donnarumma et al. [AGILE Collaboration] Multiwavelength observa-tions of 3C 454.3 II. The AGILE 2007 December campaign, Astrophys. J.707 (2009) 1115-1123, doi: 10.1088/0004-637X/707/2/1115, arXiv:0910.4883[astro-ph.HE].

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[116] C.T. Kullenberg et al. [NOMAD Collaboration], A Measurement of CoherentNeutral Pion Production in Neutrino Neutral Current Interactions in NO-MAD, Phys. Lett. B682 (2009) 177-184, arXiv:0910.0062[hep-ex].

[117] M. Tavani et al. [AGILE Collaboration] Extreme particle accelera-tion in the microquasar Cygnus X-3, Nature 462 (2009) 620-623,doi:10.1038/nature08578, arXiv:0910.5344 [astro-ph.HE].

[118] Y. Evangelista et al. [AGILE Collaboration] Temporal properties of GX 301-2over a year-long observation with SuperAGILE, Astrophys. J. 708 (2010) 1663-1673, doi: 10.1088/0004-637X/708/2/1663, arXiv:0911.3743 [astro-ph.HE].

[119] A. Pellizzoni et al. [AGILE Collaboration] Detection of Gamma-Ray Emissionfrom the Vela Pulsar Wind Nebula with AGILE, Science 327 (2010) 663-665,doi:10.1126/science.1183844, arXiv:0912.2921 [astro-ph.HE].

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Pavia 16 Settembre 2014, Dr. Paolo W. Cattaneo