2018-10-02 06:14 |
Investigation of charge multiplication in single crystalline CVD diamond particle detectors
/ Muškinja, M (Stefan Inst., Ljubljana) ; Cindro, V (Stefan Inst., Ljubljana) ; Gorišek, A (Stefan Inst., Ljubljana) ; Kagan, H (Ohio State U.) ; Kramberger, G (Stefan Inst., Ljubljana) ; Mandić, I (Stefan Inst., Ljubljana) ; Mikuž, M (Stefan Inst., Ljubljana ; Ljubljana U.) ; Phan, S (Ohio State U.) ; Smith, D S (Ohio State U.) ; Zavrtanik, M (Stefan Inst., Ljubljana)
/RD42
A special metallization pattern was created on a single crystalline diamond detector aimed at creating high enough electric field for impact ionization in the detector material. Electric field line focusing through electrode design and very high bias voltages were used to obtain high electric fields. [...]
2016 - 8 p.
- Published in : Nucl. Instrum. Methods Phys. Res., A 841 (2017) 162-169
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2018-08-11 07:06 |
Performance of a diamond - tungsten sampling calorimeter
/ Tesarek, R J (Rutgers U., Piscataway) ; Gilman, Ronald A (Rutgers U., Piscataway) ; Kumbartzki, G (Rutgers U., Piscataway) ; Lee, M H (Rutgers U., Piscataway) ; Rutt, P (Rutgers U., Piscataway) ; Sannes, F (Rutgers U., Piscataway) ; Schnetzer, S (Rutgers U., Piscataway) ; Somalwar, S V (Rutgers U., Piscataway) ; Stone, R (Rutgers U., Piscataway) ; Thomson, G B (Rutgers U., Piscataway) et al.
We report here the first measurements of a diamond-tungsten sampling calorimeter. The calorimeter consisted of twenty layers of diamond with one radiation length of tungsten per layer. [...]
RU-94-03; OHSTPY-HEP-E-94-023.-
1994 - 10 p.
- Published in : Nucl. Instrum. Methods Phys. Res., A 349 (1994) 96-105
Fulltext: PDF;
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2013-10-11 04:19 |
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2007-06-06 04:44 |
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2005-02-01 03:54 |
Investigation of chemical vapour deposition diamond detectors by X- ray micro-beam induced current and X-ray micro-beam induced luminescence techniques
/ Olivero, P ; Manfredotti, C ; Vittone, E ; Fizzotti, F ; Paolini, C ; Lo Giudice, A ; Barrett, R ; Tucoulou, R
Tracking detectors have become an important ingredient in high-energy physics experiments. In order to survive the harsh detection environment of the Large Hadron Collider (LHC), trackers need to have special properties. [...]
2004
- Published in : Spectrochimica Acta, B 59 (2004) 1565-1573
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2004-12-07 06:50 |
The development of diamond tracking detectors for the LHC
/ Adam, W ; Berdermann, E ; Bergonzo, P ; de Boer, Wim ; Bogani, F ; Borchi, E ; Brambilla, A ; Bruzzi, M ; Colledani, C ; Conway, J et al.
Chemical vapor deposition diamond has been discussed extensively as an alternate sensor material for use very close to the interaction region of the LHC where extreme radiation conditions exist. During the last few years diamond devices have been manufactured and tested with LHC electronics with the goal of creating a detector usable by all LHC experiment. [...]
2003
- Published in : Nucl. Instrum. Methods Phys. Res., A 514 (2003) 79-86
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2000-08-31 00:00 |
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2000-07-31 00:00 |
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2000-03-22 00:00 |
Micro-strip sensors based on CVD Diamond
/ Adam, W ; Berdermann, E ; Bergonzo, P ; Bertuccio, G ; Bogani, F ; Borchi, E ; Brambilla, A ; Bruzzi, Mara (INFN and Universita', Firenze, Italy) ; Colledani, C ; Conway, J et al.
In this article we present the performance of recent chemical vapour deposition (CVD) diamond micro-strip sensors in beam tests. In addition we present the first comparison of a CVD diamond micro-strip sensor before and after proton irradiation..
CERN-EP-2000-041.-
Geneva : CERN, 2000 - 10 p.
- Published in : Nucl. Instrum. Methods Phys. Res., A 453 (2000) 141-148
Fulltext: PDF;
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2000-01-05 00:00 |
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