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A new version of the CLARO8 ASIC has been designed in AMS 0.35 μm CMOS technology, based on radiation hardened by design cells, and extensively tested. Results on the complete radiation hardness characterization are presented.
Radiation hardness tests of the CLARO8 ASIC, designed in AMS 0.35micron CMOS technology for the upgrade of the CERN LHCb RICH detectors, are presented, including measurements of total- ionizing dose and single event effects.
We report the first study of photodesorption of various molecular gases from a polymer organic film. This study was carried out in a Pyrex cell whose inner surface was covered by a polydimethyl-siloxane (PDMS) compound. The cell was illuminated by a flash or a CW halogen lamp. The molecular gas composition was analyzed with a mass spectrometer. We observed the variation of the molecular gas density...
The SuperB asymmetric e+e− collider and detector to be built at the newly founded Nicola Cabibbo Lab will provide a uniquely sensitive probe of New Physics in the flavor sector of the Standard Model. Studying minute effects in the heavy quark and heavy lepton sectors requires a data sample of 75 ab−1 and a peak luminosity of 1036 cm−2 s−1.
The SuperB asymmetric e+e− collider and detector to be built at the newly founded Nicola Cabibbo Lab will provide a uniquely sensitive probe of New Physics in the flavor sector of the Standard Model. Studying minute effects in the heavy quark and heavy lepton sectors requires a data sample of 75ab−1 and a peak luminosity of 1036cm−2s−1. Providing a user-friendly solution to workload management in...
The SuperB asymmetric energy e+e− collider and detector [1] to be built at the newly founded Nicola Cabibbo Lab [2] will provide a uniquely sensitive probe of New Physics in the flavor sector of the Standard Model. Studying minute effects in the heavy quark and heavy lepton sectors requires a data sample of 75 ab−1 and a peak luminosity of 1036 cm−2s−1. These parameters require a substantial growth...
We present a general-purpose software framework, which allows different multi-disciplinary communities to take advantage of a distributed computational infrastructure. The ultimate goal is to provide organizations that need to exploit resources with CPU-intensive loose-parallel tasks with a software service capable to offer a user-friendly, standard and highly customizable access to the Grid. The...
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