P. Brogueira
University of Lisbon
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Featured researches published by P. Brogueira.
Physical Review Letters | 2010
J. Abraham; P. Abreu; M. Aglietta; D. Allard; I. Allekotte; Jeffrey C. Allen; M. Ambrosio; Luis A. Anchordoqui; S. Andringa; A. Anzalone; C. Aramo; E. Arganda; K. Arisaka; F. Arqueros; H. Asorey; P. Assis; J. Aublin; M. Ave; G. Avila; D. Badagnani; M. Balzer; B. M. Baughman; P. Bauleo; C. Berat; T. Bergmann; P. Billoir; O. Blanch-Bigas; F.J. Blanco; M. Blanco; C. Bleve
We describe the measurement of the depth of maximum, Xmax, of the longitudinal development of air showers induced by cosmic rays. Almost four thousand events above 10^18 eV observed by the fluorescence detector of the Pierre Auger Observatory in coincidence with at least one surface detector station are selected for the analysis. The average shower maximum was found to evolve with energy at a rate of (106 +35/-21) g/cm^2/decade below 10^(18.24 +/- 0.05) eV and (24 +/- 3) g/cm^2/decade above this energy. The measured shower-to-shower fluctuations decrease from about 55 to 26 g/cm^2. The interpretation of these results in terms of the cosmic ray mass composition is briefly discussed.
Nuclear Instruments & Methods in Physics Research Section A-accelerators Spectrometers Detectors and Associated Equipment | 2010
J. Abraham; P. Abreu; M. Aglietta; C. Aguirre; D. Allard; I. Allekotte; Jeffrey C. Allen; J. Alvarez-Muñiz; M. Ambrosio; Luis A. Anchordoqui; S. Andringa; A. Anzalone; C. Aramo; E. Arganda; S. Argirò; K. Arisaka; F. Arneodo; F. Arqueros; T. Asch; H. Asorey; P. Assis; J. Aublin; M. Ave; G. Avila; T. Bäcker; D. Badagnani; B. M. Baughman; T. Beau; S. BenZvi; C. Berat
The surface detector array of the Pierre Auger Observatory consists of 1600 water-Cherenkov detectors, for the study of extensive air showers (EAS) generated by ultra-high-energy cosmic rays. We describe the trigger hierarchy, from the identification of candidate showers at the level of a single detector, amongst a large background (mainly random single cosmic ray muons), up to the selection of real events and the rejection of random coincidences. Such trigger makes the surface detector array fully efficient for the detection of EAS with energy above 3 x 10(18) eV, for all zenith angles between 0 degrees and 60 degrees, independently of the position of the impact point and of the mass of the primary particle. In these range of energies and angles, the exposure of the surface array can be determined purely on the basis of the geometrical acceptance
Archive | 2008
J. Abraham; P. Abreu; M. Aglietta; C. Aguirre; D. Allard; I. Allekotte; Jeffrey C. Allen; P. Allison; M. Ambrosio; Luis A. Anchordoqui; S. Andringa; A. Anzalone; C. Aramo; K. Arisaka; E. Armengaud; F. Arneodo; F. Arqueros; T. Asch; H. Asorey; P. Assis; J. Aublin; M. Ave; G. Avila; D. Badagnani; D. Barnhill; P. Bauleo; T. Beau; S. BenZvi; C. Berat; Till Bergmann
Archive | 2013
J. Abraham; P. Abreu; M. Aglietta; C. Aguirre; D. Allard; I. Allekotte; Jeffrey C. Allen; M. Ambrosio; Luis A. Anchordoqui; S. Andringa; A. Anzalone; C. Aramo; E. Arganda; K. Arisaka; F. Arqueros; T. Asch; H. Asorey; P. Assis; J. Aublin; M. Ave; G. Avila; D. Badagnani; B. M. Baughman; P. Bauleo; T. Beau; S. BenZvi; C. Berat; X. Bertou; P. Billoir; O. Blanch-Bigas
Archive | 2009
J. Abraham; P. Abreu; M. Aglietta; C. Aguirre; D. Allard; I. Allekotte; Jeffrey C. Allen; P. Allison; M. Ambrosio; Luis A. Anchordoqui; S. Andringa; A. Anzalone; C. Aramo; E. Arganda; K. Arisaka; F. Arneodo; F. Arqueros; T. Asch; H. Asorey; P. Assis; J. Aublin; M. Ave; G. Avila; D. Badagnani; B. M. Baughman; P. Bauleo; T. Beau; S. BenZvi; C. Berat; P. Bernardini