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Dive into the research topics where C. Seez is active.

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Featured researches published by C. Seez.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1995

TEST OF A RESISTIVE PLATE CHAMBER OPERATING WITH LOW GAS AMPLIFICATION AT HIGH-INTENSITY BEAMS

C. Bacci; C. Bencze; R. Cardarelli; F. Ceradini; G. Ciapetti; A. Di Ciaccio; F. Lacava; A. Nisati; D. Orestano; Emilio Petrolo; L. Pontecorvo; E. Radermacher; R. Santonico; C. Seez; F. Szoncso; Stefano Veneziano; M. Verzocchi; G. Walzel; G. Wrochna; C.-E. Wulz; L. Zanello

Abstract We present results on efficiency and time resolution of a resistive plate chamber operating at low gas amplification. The measurements were done within the programme of the RD5 experiment at CERN with a pion beam of flux 0.1–3.9 kHz/cm2.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1994

Study of resistive plate chambers for muon detection at hadron colliders

Gy.L. Bencze; J.L. Bénichou; M. Della Negra; K. Eggert; A. Hervé; D. Peach; E. Radermacher; C. Seez; G. Waurick; G. Wrochna; C. Bacci; F. Ceradini; G. Ciapetti; F. Lacava; G. Margutti; A. Nisati; Emilio Petrolo; L. Pontecorvo; A. Tusi; Stefano Veneziano; L. Zanello; R. Cardarelli; A. Di Ciaccio; R. Santonico; M. Andlinger; F. Szoncso; G. Walzel; C.-E. Wulz

Abstract We present the performance of a hodoscope made of resistive plate chambers (RPC) installed in the RD5 experiment at CERN and exposed to beams of high energy muons and pions. The efficiency as a function of the particle flux is studied for different resistivities. A substantial improvement is obtained with plates of lower resistivity. Tracking muons through the RPC and using the bending power of a 2.7 Tm iron toroid, a simple trigger algorithm is used to select large momentum muons.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1996

Pattern Comparator Trigger (PACT) for the muon system of the CMS experiment

M. Andlinger; Alexander Kluge; F. Szoncso; G. Walzel; C.-E. Wulz; P. Gorodenski; Frank Klefenz; Reinhard Männer; Gy.L. Bencze; Á. Csilling; H. Czyrkowski; R. Da̧browski; W. Dominik; M. Konecki; J. Krolikowski; M. Lewandowski; Z. Mazur; K. Sulowski; M. Górski; M. Szeptycka; M. Della Negra; I. Kudla; M. Pimiä; E. Radermancher; C. Seez; G. Wrochna

The general scheme for the fast, pipelined first level trigger on high pt muons in the CMS detector at LHC is presented. The prototype PACT system was tested in the high momentum muon beams in the RD5 experiment during 1993/94 runs. The obtained efficiency curves are shown.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1994

Measurement of the efficiency and time resolution of double-gap resistive plate chambers

Th. Moers; H. Tuchscherer; G. Bencze; E. Radermacher; C. Seez; G. Wrochna; C. Bacci; F. Ceradini; G. Ciapetti; F. Lacava; G. Margutti; A. Nisati; D. Orestano; Emilio Petrolo; L. Pontecorvo; A. Tusi; Stefano Veneziano; M. Verzocchi; L. Zanello; R. Cardarelli; A. Di Ciaccio; R. Santonico; F. Szoncso; G. Walzel; C.-E. Wulz

Abstract We describe a detector built by assembling together two resistive plate chambers and read out by a single median electrode plane segmented in strips. We present results of measurements of the efficiency and of the time response as a function of the particle flux.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1995

Position and timing resolution of interpolating cathode strip chambers in a test beam

G. Bencze; A. Chikanian; M. Della Negra; V. Gratchev; A. Hervé; O. Kiselev; S. McCorkle; M. Mohammadi; P. O'Connor; V. Polychronakos; O. Prokofiev; V. Radeka; E. Radermacher; C. Seez; J. T. Shank; G.C. Smith; J. Sondericker; D. Stephani; F. Szoncso; V. Tcherniatine; A. Vanyashin; G. Walzel; S. Whitaker; G. Wrochna; C.-E. Wulz; B. Yu

Abstract Design and construction details are presented of a four-layer, position sensitive, cathode strip chamber and a low cost, highly multiplexed readout system based on monolithic circuit technology that are well suited for a muon detector at future hadron colliders. Track location is determined by interpolation of the cathode induced charge, using a new design with intermediate strips between readout nodes to reduce the number of channels and improve position resolution and linearity. Results are reported from tests with an 55 Fe source and a 300 GeV/ c muon beam in RD5 at CERN. The beam test demonstrated position resolution of 40 μ m per layer which is less than 1% of the readout pitch. The timing resolution for the entire four-layer detector was 3.6 ns r.m.s. which is adequate for fully efficient beam crossing identification in an LHC experiment.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1994

Parallel plate chambers: a fast detector for ionizing particles

A. Arefiev; G. Bencze; A. Bizzeti; E. Choumilov; C. Civinini; Raffaello D'Alessandro; F. Dalla Santa; M. Della Negra; A. Ferrando; M.C. Fouz; A. Hervé; A. Iglesias; Y. Kolotaev; A. Malinin; L. Martinez-Laso; M. Meschini; D. Peach; V. Pojidaev; E. Radermacher; A. Rozjkov; C. Seez; F. Szoncso; G. Wrochna; C.-E. Wulz

Abstract The parallel plate chamber technique is summarized together with recent results of tests concerning efficiency, time resolution, high rate capability and radiation resistance.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1993

The construction and performance of single-layer honeycomb strip chambers in the TRACAL detector of RD5

F. Bakker; H. van der Graaf; A. Korporaal; R. Loos; P. Rewiersma; G.A.A. Witteman; R. Bergman; C. Brouwer; J. Dijkema; A. C. König; C.L.A. Pols; T. Wijnen; A. Bettini; P. Casoli; S. Centro; R. Martinelli; Anna Teresa Meneguzzo; M. Nicoletto; P. Zotto; A. Di Ciaccio; A. Nisati; M. Andlinger; Alexander Kluge; F. Szoncso; G. Walzel; C.-E. Wulz; V. Karimäki; M. Pimiä; R. Kinnunen; J. Tuominiemi

Abstract Single layer honeycomb strip chambers have been constructed for the tracking calorimeter TRACAL. This detector is a component of the RD5 experimental test setup at CERN, where aspects of muon detection in LHC conditions are studied. The construction of the chambers is described and the excellent spatial resolution obtained from strip signals (σ


European Physical Journal C | 1991

Branching ratios and properties ofD-meson decays

M. P. Alvarez; R. Barate; D. Bloch; P. Bonamy; P. Borgeaud; Mark J. Burchell; H. Burmeister; J.M. Brunet; F. Calvino; M. Cattaneo; J. M. Crespo; B. D'Almagne; M. David; L. Di Ciaccio; John D. Dixon; P. Druet; A. Duane; J.P. Engel; A. Ferrer; T. A. Filippas; E. Fokitis; R.W. Forty; P. Foucault; E.N. Gazis; J.P. Gerber; Y. Giomataris; T. Hofmokl; Elias Katsoufis; M. Koratzinos; C. Krafft

AbstractProperties ofD mesons produced in the photo-production experiment NA 14/2 at CERN are reported. The following ratios of branching fractions were measured:


4th International Conference on Advanced Technology and Particle Physics | 1995

Resistive Plate Chambers working at high rate

M. Abbrescia; C. Bacci; C. Bencze; P. Camarri; R. Cardarelli; F. Ceradini; G. Ciapetti; A. Di Ciaccio; G. Iaselli; F. Lacava; V. Makeev; A. Nisati; Emilio Petrolo; L. Pontecorvo; E. Radermacher; R. Santonico; C. Seez; Stefano Veneziano; M. Verzocchi; V. Zaets; L. Zanello; G. Zito


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 1994

Performance of a DTBX prototype

Francis M. Gasparini; I. Lippi; R. Martinelli; A. Meneguzzo; P. Sartori; P. Zotto; M. Andlinger; F. Szoncso; G. Walzel; C.-E. Wulz; Gy.L. Bencze; M. Della Negra; D. Peach; E. Radermacher; C. Seez; G. Wrochna

\begin{gathered} Br(D^0 \to K^ + K^ - )/Br(D^0 \to K^ - \pi ^ + ) = 0.16 \pm 0.05, \hfill \\ Br(D^0 \to K^ - \pi ^ + \pi ^0 )/Br(D^0 \to K^ - \pi ^ + ) = 4.0 \pm 0.09 \pm 1.0, \hfill \\ Br(D^0 \to K^ - \pi ^ + \pi ^ + \pi ^ - )/Br(D^0 \to K^ - \pi ^ + ) \hfill \\ = 1.9 \pm 0.25 \pm 0.20 \hfill \\ \end{gathered}

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C.-E. Wulz

University of Wisconsin-Madison

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Gy.L. Bencze

Hungarian Academy of Sciences

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