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Featured researches published by C. Pascaud.


Journal of Instrumentation | 2010

A high precision Fabry-Perot cavity polarimeter at HERA

S. Baudrand; M. Bouchel; V. Brisson; R. Chiche; M. Jacquet; S. Kurbasov; G. Li; C. Pascaud; A. Reboux; V. Soskov; Zhen Zhang; F. Zomer; M. Beckingham; T. Behnke; N. Coppola; N. Meyners; D. Pitzl; S. Schmitt; M. Authier; P. Deck-Betinelli; Y. Queinec; L. Pinard

A Fabry-Perot cavity polarimeter, installed in 2003 at HERA for the second phase of its operation, is described. The cavity polarimeter was designed to measure the longitudinal polarisation of the HERA electron beam with high precision for each electron bunch spaced with a time interval of 96ns. Within the cavity the laser intensity was routinely enhanced up to a few kW from its original value of 0.7W in a stable and controllable way. By interacting such a high intensity laser beam with the HERA electron beam it is possible to measure its polarisation with a relative statistical precision of 2% per bunch per minute. Detailed systematic studies have also been performed resulting in a systematic uncertainty of 1%.


Journal of Instrumentation | 2010

Per Mill Level Control of the Circular Polarisation of the Laser Beam for a Fabry-Perot Cavity Polarimeter at HERA

V. Brisson; R. Chiche; M. Jacquet; C. Pascaud; V. Soskov; Z. Zhang; F. Zomer; M. Beckingham; N. Coppola

A precise and fast Fabry-Perot cavity polarimeter, installed in the HERA tunnel in the summer of 2003, was used to measure the longitudinal polarisation of the lepton beam. A complete theoretical model has been developed in order to control at the per mill level the degree of circular polarisation of the laser beam. The transport of this quantity within the whole optical setup has also been performed and controlled at the same level of precision. This is the first time that such a precision is achieved in the difficult, hostile and noisy environment of a particle collider.


arXiv: High Energy Physics - Phenomenology | 2011

Generalisation of DGLAP equations to massive partons

C. Pascaud


Archive | 2001

TESLA: The superconducting electron positron linear collider with an integrated X-ray laser laboratory. Technical design report. Pt. 6: Appendices. Chapter 2: THERA: Electron proton scattering at s**(1/2) approximately 1-TeV

H. Abramowicz; P. Jankowski; V. Zoller; V. Chekelian; A. Levy; I. Redondo; D. Waters; T. Naumann; U. Gensch; M. Kuze; P. Wesolowski; S. Sultansoy; K. Long; U. Schneekloth; M. Krawczyk; O. Yavas; L. Lonnblad; H. Kowalski; E. Rondio; R. Wallny; G. Radel; T. Lastovicka; V. Guzey; O. Cakir; J. Gassner; J.G. Conteras; R. Klanner; K. Daum; H. Spiesberger; M. Ylmaz

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F. Zomer

Centre national de la recherche scientifique

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M. Jacquet

Centre national de la recherche scientifique

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R. Chiche

Centre national de la recherche scientifique

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V. Brisson

Centre national de la recherche scientifique

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V. Soskov

Centre national de la recherche scientifique

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A. Reboux

Centre national de la recherche scientifique

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G. Li

Centre national de la recherche scientifique

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L. Pinard

Centre national de la recherche scientifique

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M. Bouchel

Centre national de la recherche scientifique

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S. Baudrand

Centre national de la recherche scientifique

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