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Featured researches published by N. G. Busca.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2008

Temperature and Humidity Dependence of Air Fluorescence Yield measured by AIRFLY

M. Ave; M. Boháčová; B. Buonomo; N. G. Busca; L. Cazon; S.D. Chemerisov; M.E. Conde; R.A. Crowell; P. Di Carlo; C. Di Giulio; M. Doubrava; A. Esposito; P. Facal; F.J. Franchini; J.R. Hörandel; M. Hrabovsky; M. Iarlori; T. Kasprzyk; B. Keilhauer; H.O. Klages; M. Kleifges; S. E. Kuhlmann; G. Mazzitelli; L. Nozka; A. Obermeier; M. Palatka; S. Petrera; P. Privitera; J. Ridky; V. Rizi

Abstract The fluorescence detection of ultra high energy cosmic rays requires a detailed knowledge of the fluorescence light emission from nitrogen molecules over a wide range of atmospheric parameters, corresponding to altitudes typical of the cosmic ray shower development in the atmosphere. We have studied the temperature and humidity dependence of the fluorescence light spectrum excited by MeV electrons in air. Results for the 313.6, 337.1, 353.7 and 391.4xa0nm bands are reported in this paper. We found that the temperature and humidity dependence of the quenching process changes the fluorescence yield by a sizeable amount (up to 20% for the temperature dependence in the 391.4xa0nm band) and its effect must be included for a precise estimation of the energy of ultra high energy cosmic rays.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2008

A novel method for the absolute fluorescence yield measurement by AIRFLY

M. Ave; M. Boháčová; B. Buonomo; N. G. Busca; L. Cazon; S.D. Chemerisov; M.E. Conde; R.A. Crowell; P. Di Carlo; C. Di Giulio; M. Doubrava; A. Esposito; P. Facal; F.J. Franchini; J.R. Hörandel; M. Hrabovsky; M. Iarlori; T. Kasprzyk; B. Keilhauer; H.O. Klages; M. Kleifges; S. E. Kuhlmann; G. Mazzitelli; L. Nozka; A. Obermeier; M. Palatka; S. Petrera; P. Privitera; J. Ridky; V. Rizi

One of the goals of the AIRFLY (AIR FLuorescence Yield) experiment is to measure the absolute fluorescence yield induced by electrons in air to better than 10% precision. We introduce a new technique for measurement of the absolute fluorescence yield of the 337 nm line that has the advantage of reducing the systematic uncertainty due to the detector calibration. The principle is to compare the measured fluorescence yield to a well known process—the Cherenkov emission. Preliminary measurements taken in the BFT (Beam Test Facility) in Frascati, Italy with 350 MeV electrons are presented. Beam tests in the Argonne Wakefield Accelerator at the Argonne National Laboratory, USA with 14 MeV electrons have also shown that this technique can be applied at lower energies.


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2006

Calibration of the surface array of the Pierre Auger Observatory

X. Bertou; P.S. Allison; C. Bonifazi; P. Bauleo; C. Grunfeld; M. Aglietta; F. Arneodo; D. Barnhill; J. J. Beatty; N. G. Busca; A. Creusot; D. Dornic; A. Etchegoyen; A. Filevitch; P. L. Ghia; I. Lhenry-Yvon; M.C. Medina; E. Moreno; D. Nitz; T. Ohnuki; S. Ranchon; H. Salazar; T. Suomijärvi; D. Supanitsky; A. Tripathi; M. Urban; L. Villaseñor


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2008

Spectrally resolved pressure dependence measurements of air fluorescence emission with AIRFLY

M. Ave; M. Boháčová; B. Buonomo; N. G. Busca; L. Cazon; S.D. Chemerisov; M.E. Conde; R.A. Crowell; P. Di Carlo; C. Di Giulio; M. Doubrava; A. Esposito; P. Facal; F.J. Franchini; J.R. Hörandel; M. Hrabovsky; M. Iarlori; T. Kasprzyk; B. Keilhauer; H.O. Klages; M. Kleifges; S. E. Kuhlmann; G. Mazzitelli; L. Nozka; A. Obermeier; M. Palatka; S. Petrera; P. Privitera; J. Ridky; V. Rizi


Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2008

Energy dependence of air fluorescence yield measured by AIRFLY

M. Ave; M. Boháčová; B. Buonomo; N. G. Busca; L. Cazon; S.D. Chemerisov; M.E. Conde; R.A. Crowell; P. Di Carlo; C. Di Giulio; M. Doubrava; A. Esposito; P. Facal; F.J. Franchini; J. Gebhardt; Timothy Graber; J.R. Hörandel; M. Hrabovsky; M. Iarlori; T. Kasprzyk; B. Keilhauer; H.O. Klages; M. Kleifges; S. E. Kuhlmann; G. Mazzitelli; M. Meron; L. Nozka; A. Obermeier; M. Palatka; S. Petrera

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F.J. Franchini

Argonne National Laboratory

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L. Cazon

University of Chicago

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M. Ave

University of Chicago

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M.E. Conde

Argonne National Laboratory

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R.A. Crowell

Argonne National Laboratory

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S. E. Kuhlmann

Argonne National Laboratory

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S.D. Chemerisov

Argonne National Laboratory

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T. Kasprzyk

Argonne National Laboratory

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L. Nozka

Academy of Sciences of the Czech Republic

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M. Boháčová

Academy of Sciences of the Czech Republic

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