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  1. Ana Sayfa
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Yazar "Celebi, E." seçeneğine göre listele

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    Recent developments in DEMIRCI, the RFQ design software
    (Joint Accelerator Conferences Website - JACoW, 2017) Celebi, E.; Cakir, O.; Turemen, G.; Yasatekin, B.; Unel, G.
    The RFQ design tool DEMIRCI aims to provide fast and accurate simulation of a light ion accelerating cavity and of the ion beam in it. It is a modern tool with a graphical user interface leading to a "point and click" method to help the designer. This article summarizes the recent developments of DEMIRCI software such as the addition of beam dynamics and 8-term potential coefficient calculations. Its results are compared to other software available on the market, to show the attained compatibility level. Finally the future prospects are discussed. © 2017 CC-BY-3.0 and by the respective authors
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    Some results of test beam studies of Transition Radiation Detector prototypes at CERN
    (Iop Publishing Ltd, 2017) Tikhomirov, V. O.; Brooks, T.; Joos, M.; Rembser, C.; Celebi, E.; Gurbuz, S.; Çetin, Serkant Ali
    Operating conditions and challenging demands of present and future accelerator experiments result in new requirements on detector systems. There are many ongoing activities aimed to develop new technologies and to improve the properties of detectors based on existing technologies. Our work is dedicated to development of Transition Radiation Detectors (TRD) suitable for different applications. In this paper results obtained in beam tests at SPS accelerator at CERN with the TRD prototype based on straw technology are presented. TRD performance was studied as a function of thickness of the transition radiation radiator and working gas mixture pressure.
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    Test beam studies of the TRD prototype filled with different gas mixtures based on Xe, Kr, and Ar
    (Iop Publishing Ltd, 2017) Celebi, E.; Brooks, T.; Joos, M.; Rembser, C.; Gurbuz, S.; Çetin, Serkant Ali
    Towards the end of LHC Runl, gas leaks were observed in some parts of the Transition Radiation Tracker (TRT) of ATLAS. Due to these leaks, primary Xenon based gas mixture was replaced with Argon based mixture in various parts. Test-beam studies with a dedicated Transition Radiation Detector (TRD) prototype were carried out in 2015 in order to understand transition radiation performance with mixtures based on Argon and Krypton. We present and discuss the results of these test-beam studies with different active gas compositions.

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