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Radiation hard 3D diamond sensors for vertex detectors at HL-LHC / Graber, Lars
Diamond is a good candidate to replace silicon as sensor material in the innermost layer of a tracking detector at HL-LHC, due to its high radiation tolerance [...]
CERN-THESIS-2015-292 II.Physik-UniGö-Diss-2015/04. - 148 p.

An Investigation of Processing Techniques and Characterisation Methods for 3D Diamond Detectors / Murphy, Steven Alexander
In this thesis 3D diamond detectors were fabricated using an ultrafast femtosecond (120 fs) pulse length laser, with a 800nm wavelength, to induce a phase change of diamond to graphite to form electrodes in the diamond bulk [...]
CERN-THESIS-2018-128 -

Chemical Vapour Deposition Diamond - Charge Carrier Movement at Low Temperatures and Use in Time-Critical Applications / Jansen, Hendrik
Diamond, a wide band gap semiconductor with exceptional electrical properties, has found its way in diverse fields of application reaching from the usage as a sensor material for beam loss monitors at particle accelerator facilities, to laser windows, to UV light sensors in space applications, e.g [...]
CERN-THESIS-2013-339 -

CVD Diamond Sensors In Detectors For High Energy Physics / Bachmair, Felix Caspar
At the end of the next decade an upgrade of the Large Hadron Collider (LHC) to High Luminosity LHC (HL-LHC) is planned which requires the development of new radiation tolerant sensor technology [...]
CERN-THESIS-2016-163 ETH-23725. -

Development and simulation of 3D diamond detectors / Forcolin, Giulio Tiziano
Ever increasing demand for more radiation resistant detectors from experiments such as those at the Large Hadron Collider has pushed the development of novel radiation resistant technologies [...]
CERN-THESIS-2018-127 -

A 3D diamond detector for particle tracking / Artuso, M (Syracuse U.) ; Bachmair, F (ETH, Zurich (main)) ; Bäni, L (ETH, Zurich (main)) ; Bartosik, M (CERN ; CERN) ; Beacham, J (Ohio State U.) ; Bellini, V (INFN, Catania) ; Belyaev, V (Moscow Phys. Eng. Inst.) ; Bentele, B (Colorado U.) ; Berdermann, E (Darmstadt, GSI) ; Bergonzo, P (Paris, CEA) et al.
In the present study, results towards the development of a 3D diamond sensor are presented. Conductive channels are produced inside the sensor bulk using a femtosecond laser. [...]
2016 - 4 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 824 (2016) 402-405
In : Frontier Detectors for Frontier Physics: 13th Pisa Meeting on Advanced Detectors, La Biodola, Isola D'elba, Italy, 24 - 30 May 2015, pp.402-405
Experience on 3D Silicon Sensors for ATLAS IBL / Darbo, G
To extend the physics reach of the Large Hadron Collider (LHC), upgrades to the accelerator are planned which will increase the peak luminosity by a factor 5-10. To cope with the increased occupancy and radiation damage, the ATLAS experiment plans to introduce an all-silicon inner tracker with the high luminosity upgrade (HL-LHC). [...]
ATL-INDET-SLIDE-2014-570.- Geneva : CERN, 2014 - 29 p. Fulltext: PDF; External link: Original Communication (restricted to ATLAS)
In : 7th International Workshop on Semiconductor Pixel Detectors for Particles and Imaging, Niagara Falls, Ontario, Canada, 1 - 5 Sep 2014
Studies on irradiated pixel detectors for the ATLAS IBL and HL-LHC upgrade / Gallrapp, Christian
The constant demand for higher luminosity in high energy physics is the reason for the continuous effort to adapt the accelerators and the experiments [...]
CERN-THESIS-2015-341 - 173 p.

Development of Pixel Module Assembly Processes for the Phase 2 Upgrade of the ATLAS Detector and Test Beam Measurements with Diamond Pixel Detectors. / Beck, Helge Christoph
One of the most powerful machines to study particle physics is the Large Hadron Collider (LHC) [...]
CERN-THESIS-2019-297 - 128 p.

Full text
Book cover Femtosecond laser 3D micromachining for microfluidic and optofluidic applications / Sugioka, Koji
Femtosecond lasers opened up new avenue in materials processing due to its unique features of ultrashort pulse width and extremely high peak intensity [...]
Dordrecht : Springer, 2013. - 131 p.

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