全部文献期刊学位论文会议报纸专利标准年鉴图书|学者科研项目
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作者:M. Boscardin , G. Casse ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2014, Vol.765, pp.59-63Elsevier
摘要:Abstract(#br)We pursue scribe–cleave–passivate (SCP) technology for making “slim edge” sensors. The goal is to reduce the inactive region at the periphery of the devices while maintaining their performance. In this paper we report on two aspects of the current efforts. ...
作者:M. Boscardin , M. Crivellari ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2016Elsevier
摘要:Abstract(#br)Multiwall carbon nanotubes (MWCNTs) consist of multiple layers of graphite sheets arranged in concentric cylinders, from two to many tens. These systems are closely related to graphite layers but in some features, MWCNTs behave quite differently from graphite. I...
作者:M. Boscardin , F. Cenna ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2016Elsevier
摘要:Abstract(#br)In this contribution we will review the progresses toward the construction of a tracking system able to measure the passage of charged particles with a combined precision of ∼10 ps and ∼10 μm, either using a single type of sensor, able to concurrently measu...
作者:M. Boscardin , L. Bosisio ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2014, Vol.765, pp.146-150Elsevier
摘要:Abstract(#br)In view of the LHC upgrade for the high luminosity phase (HL-LHC), the ATLAS experiment is planning to replace the inner detector with an all-silicon system. The n-in-p bulk technology represents a valid solution for the modules of most of the layers, given the signi...
作者:M. Boscardin , F. Cenna ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2015, Vol.796, pp.141-148Elsevier
摘要:Abstract(#br)Low-Gain Avalanche Diodes (LGAD) are silicon detectors with output signals that are about a factor of 10 larger than those of traditional sensors. In this paper we analyze how the design of LGAD can be optimized to exploit their increased output signal to reach optim...
作者:M. Boscardin , L. Bosisio ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2016, Vol.831, pp.133-136Elsevier
摘要:Abstract(#br)In view of the LHC upgrade phases towards the High Luminosity LHC (HL-LHC), the ATLAS experiment plans to upgrade the Inner Detector with an all-silicon system. The n-on-p silicon technology is a promising candidate to achieve a large area instrumented with pixel sen...
作者:M. Boscardin , L. Ferrario ...
来源:[J].Microelectronics Journal(IF 0.912), 1998, Vol.29 (1), pp.49-58Elsevier
摘要:Abstract(#br)We describe an activity aimed at developing npn silicon bipolar phototransistors to be used in optical position encoders. Extensive numerical proces and device simulations have been carried out, providing the guidelines for the definition of the phototransistor fabri...
作者:M. Boscardin , M. Bomben ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2016, Vol.824, pp.388-391Elsevier
摘要:Abstract(#br)We report on the 3-year INFN ATLAS–CMS joint research activity in collaboration with FBK, started in 2014, and aimed at the development of new thin pixel detectors for the High Luminosity LHC Phase-2 upgrades. The program is concerned with both 3D and planar act...
作者:M. Boscardin , G. Calderini ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2016, Vol.831, pp.116-121Elsevier
摘要:Abstract(#br)We report on the ATLAS and CMS joint research activity, which is aiming at the development of new, thin silicon pixel detectors for the Large Hadron Collider Phase-2 detector upgrades. This R&D is performed under special agreement between Istituto Nazionale di Fisica...
作者:M. Boscardin , S. Carturan ...
来源:[J].Nuclear Inst. and Methods in Physics Research, A(IF 1.142), 2015, Vol.796, pp.23-28Elsevier
摘要:Abstract(#br)In this paper, we report on the characterization of silicon 3D and planar sensors, coupled with different neutron converter materials, such as 10 B, B 4 10 C and 6 LiF, with different deposition thickness. Selected result...

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