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Featured researches published by T. Chiarusi.


Astroparticle Physics | 2010

Measurement of the atmospheric muon flux with the NEMO Phase-1 detector

Sebastiano Aiello; Fabrizio Ameli; I. Amore; M. Anghinolfi; A. Anzalone; G.C. Barbarino; M. Battaglieri; M. Bazzotti; A. Bersani; Nicolo' Beverini; S. Biagi; M. Bonori; B. Bouhadef; M. Brunoldi; G. Cacopardo; A. Capone; L. Caponetto; G. Carminati; T. Chiarusi; M. Circella; R. Cocimano; R. Coniglione; M. Cordelli; M. Costa; A. D’Amico; G. De Bonis; C. De Marzo; G. De Rosa; G. De Ruvo; R. De Vita

Abstract The NEMO Collaboration installed and operated an underwater detector including prototypes of the critical elements of a possible underwater km3 neutrino telescope: a four-floor tower (called Mini-Tower) and a Junction Box. The detector was developed to test some of the main systems of the km3 detector, including the data transmission, the power distribution, the timing calibration and the acoustic positioning systems as well as to verify the capabilities of a single tridimensional detection structure to reconstruct muon tracks. We present results of the analysis of the data collected with the NEMO Mini-Tower. The position of photomultiplier tubes (PMTs) is determined through the acoustic position system. Signals detected with PMTs are used to reconstruct the tracks of atmospheric muons. The angular distribution of atmospheric muons was measured and results compared to Monte Carlo simulations.


Radiation Measurements | 2003

First results of the CAKE experiment

T. Chiarusi; E. Bottazzi; S. Cecchini; D. Di Ferdinando; G. Giacomelli; A. Kumar; L. Patrizii; V. Togo; C. Valieri

Abstract We present the preliminary results of the cosmic abundances below the knee energies (CAKE) experiment for the study of the primary cosmic-ray composition and for the search of exotic particles in the primary cosmic radiation. CAKE uses CR39 ® and Lexan nuclear track detectors, which were calibrated with beams of 158 A GeV Pb ions and 1 A GeV Fe ions at the CERN and BNL accelerators, respectively. Results based on the analysis of a first data sample are shown.


Astroparticle Physics | 2005

TIME CORRELATIONS OF HIGH ENERGY MUONS IN AN UNDERGROUND DETECTOR

Y. Becherini; S. Cecchini; T. Chiarusi; M. Cozzi; H. Dekhissi; Jamal Eddine Derkaoui; L.S. Esposito; G. Giacomelli; M. Giorgini; N. Giglietto; F. Maaroufi; G. Mandrioli; A. Margiotta; S. Manzoor; A. Moussa; L. Patrizii; V. Popa; Maximiliano Sioli; G. Sirri; M. Spurio; V. Togo

We present the result of a search for correlations in the arrival times of high energy muons collected from 1995 till 2000 with the streamer tube system of the complete MACRO detector at the underground Gran Sasso Lab. Large samples of single muons (8.6 million), double muons (0.46 million) and multiple muons with multiplicities from 3 to 6 (0.08 million) were selected. These samples were used to search for time correlations of cosmic ray particles coming from the whole upper hemisphere or from selected space cones. The results of our analyses confirm with high statistics a random arrival time distribution of high energy cosmic rays.


Radiation Measurements | 2005

Search for intermediate mass magnetic monopoles and nuclearites with the SLIM experiment

S. Cecchini; T. Chiarusi; D. Di Ferdinando; M. Cozzi; M. Frutti; G. Giacomelli; A. Kumar; S. Manzoor; J. McDonald; E. Medinaceli; J. Nogales; L. Patrizii; James Pinfold; V. Popa; I.E. Qureshi; O. Saavedra; G. Sher; M.I. Shahzad; M. Spurio; R. Ticona; V. Togo; A. Velarde


Radiation Measurements | 2005

Calibration of the Makrofol–DE nuclear track detector using relativistic lead ions

S. Manzoor; S. Cecchini; T. Chiarusi; M. Cozzi; D. Di Ferdinando; M. Frutti; G. Giacomelli; A. Kumar; G. Mandrioli; E. Medinaceli; L. Patrizii; V. Popa; M. Spurio; V. Togo; I.E. Qureshi


Nuclear Physics B - Proceedings Supplements | 2004

NEMO: Status of the Project

E. Migneco; S. Aiello; E. Amato; M. Ambriola; F. Ameli; G. Andronico; M. Anghinolfi; M. Battaglieri; R. Bellotti; A. Bersani; A. Boldrin; M. Bonori; F. Cafagna; A. Capone; L. Caponnetto; T. Chiarusi; M. Circella; R. Cocimano; R. Coniglione; M. Cordelli; M. Costa; S. Cuneo; A. D'Amico; V. D'Amico; C. De Marzo; R. De Vita; C. Distefano; Alessandro Gabrielli; E. Gandolfi; A. Grimaldi


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2011

The NEMO project: A status report

M. Taiuti; S. Aiello; F. Ameli; I. Amore; M. Anghinolfi; A. Anzalone; G.C. Barbarino; M. Battaglieri; M. Bazzotti; A. Bersani; Nicolo' Beverini; S. Biagi; M. Bonori; B. Bouhdaef; M. Brunoldi; G. Cacopardo; A. Capone; L. Caponetto; G. Carminati; T. Chiarusi; M. Circella; R. Cocimano; R. Coniglione; M. Cordelli; M. Costa; A. D’Amico; G. De Bonis; G. De Rosa; G. De Ruvo; R. De Vita


Radiation Measurements | 2005

The CAKE experiment: Progress and new results

T. Chiarusi; S. Cecchini; G. Giacomelli; S. Manzoor; E. Medinaceli; L. Patrizii; V. Togo


arXiv: Astrophysics | 2005

Cosmic ray abundance measurements with the CAKE balloon experiment

S. Cecchini; T. Chiarusi; G. Giacomelli; S. Manzoor; E. Medinaceli; L. Patrizii; V. Togo


Archive | 2003

The CAKE balloon experiment

S. Cecchini; T. Chiarusi; G. Giacomelli; A. Kumar; L. Patrizii

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V. Togo

University of Bologna

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S. Manzoor

COMSATS Institute of Information Technology

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A. Kumar

University of Bologna

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A. Capone

Sapienza University of Rome

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