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CERN Document Server Sök i 250 journaler efter:  1 - 10nästaslut  gå till journal: Sökningen tog 0.53 sekunder. 
1.
Particle physics experiments: From photography to integrated circuits / Heijne, Erik H M (IEAP CTU, Prague ; CERN ; Nikhef, Amsterdam)
Over the last decades the experiments in elementary particle physics at the new colliding beam accelerators with TeV energy, in particular the LHC at CERN, have seen profound changes. These present orders of magnitude increases in physical size, interaction rates, radiation intensity and data volume. [...]
2023 - 30 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1055 (2023) 168466 Fulltext: PDF;
2.
Pixel detectors using single energetic quantum imaging: Past and future / Heijne, Erik H M (IEAP CTU, Prague ; CERN ; Nikhef, Amsterdam)
The early steps with 2-dimensional semiconductor detectors for particle physics experiments are briefly described. A comparison is made between monolithic devices, especially the CCD, and hybrid detectors, which combine a semiconductor sensor matrix with a separate ASIC in advanced CMOS technology. [...]
2023 - 16 p. - Published in : PoS Pixel2022 (2023) 003 Fulltext: PDF;
In : International Workshop on Semiconductor Pixel Detectors for Tracking and Imaging (PIXEL 2022), Santa Fe, USA, 11 - 16 Dec 2022, pp.003
3.
History and future of radiation imaging with single quantum processing pixel detectors / Heijne, Erik H M (CERN ; IEAP CTU, Prague ; Nikhef, Amsterdam)
This introductory article treats aspects of the evolution of early semiconductor detectors towards modern radiation imaging instruments, now with millions of signal processing cells, exploiting the potential of silicon nanotechnology. The Medipix and Timepix assemblies are among the prime movers in this evolution. [...]
2021 - 14 p. - Published in : Radiat. Meas. 140 (2021) 106436 Fulltext: PDF;
In : The Medipix/Timepix ASIC family and its applications
4.
How chips pave the Road to the Higgs particle and the attoworld beyond / Heijne, Erik H M (CERN ; CTU, Prague ; NIKHEF, Amsterdam)
Scientific knowledge is the basis for new technology, but in return, new technology enables progress in science. One example has been the introduction of semiconductor imagers in astronomy. [...]
2014 - 7 p. - Published in : 10.1109/ISSCC.2014.6757325
In : IEEE International Solid-State Circuits Conference, San Francisco, CA, USA, 9 - 13 Feb 2014, pp.22-28
5.
Measuring radiation environment in LHC or anywhere else, on your computer screen with Medipix / for the ATLAS-MPX Collaboration
The Medipix family of chips use on-pixel pulse processing front-ends, digitization and counters to produce images of radiation. The devices have been derived from developments for the Large Hadron Collider (LHC) physics experiments at CERN. [...]
2013 - 7 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 699 (2013) 198-204

In : The 8th international "Hiroshima" Symposium on the Development and Application of Semiconductor Tracking Detectors, Taipei, Taiwan, 5 - 8 Dec 2011, pp.198-204
6.
Microelectronics used for Semiconductor Imaging Detectors / Heijne, Erik H M (CERN)
Semiconductor crystal technology, microelectronics developments and nuclear particle detection have been in a relation of symbiosis, all the way from the beginning. The increase of complexity in electronics chips can now be applied to obtain much more information on the incident nuclear radiation. [...]
2010 - Published in : AIP Conf. Proc. 1204 (2010) 58
In : Summer School on Nuclear Physics Methods and Accelerators in Biology and Medicine, Bratislava, Slovakia, 6 - 15 Jul 2009, pp.58
7.
Charged Particle Tracking with the Timepix ASIC / Akiba, Kazuyoshi (NIKHEF, Amsterdam) ; Artuso, Marina (Syracuse U.) ; Badman, Ryan (Syracuse U.) ; Borgia, Alessandra (Syracuse U.) ; Bates, Richard (Glasgow U.) ; Bayer, Florian (Erlangen - Nuremberg U., ECAP) ; van Beuzekom, Martin (NIKHEF, Amsterdam) ; Buytaert, Jan (CERN) ; Cabruja, Enric (Barcelona, Inst. Microelectron.) ; Campbell, Michael (CERN) et al.
A prototype particle tracking telescope has been constructed using Timepix and Medipix ASIC hybrid pixel assemblies as the six sensing planes. Each telescope plane consisted of one 1.4 cm2 assembly, providing a 256x256 array of 55 micron square pixels. [...]
arXiv:1103.2739; LHCB-PUB-2011-010; CERN-LHCb-PUB-2011-010; CERN-LHCb-PUB-2011-010.- Geneva : CERN, 2012 - 51 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 661 (2012) 31-49 Fulltext: LHCb-PUB-2011-010 - PDF; arXiv:1103.2739 - PDF; External link: Preprint
8.
Introduction / Heijne, Erik H M (CERN)
2008 - Published in : IEEE J. Solid State Circuits Newsl. 13 (2008) 4 IEEE Published version, local copy: PDF;
9.
Gigasensors for an Attoscope : Catching Quanta in CMOS / Heijne, Erik H M (CERN)
2008 - Published in : IEEE J. Solid State Circuits Newsl. 13 (2008) 28-34 IEEE Published version, local copy: PDF;
10.
Executive Summary: Gigasensors for an Attoscope / Heijne, Erik H M (CERN)
2008 - Published in : IEEE J. Solid State Circuits Newsl. 13 (2008) 60-60 IEEE Published version, local copy: PDF;

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