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CERN Document Server 2,051 ჩანაწერია ნაპოვნი  1 - 10შემდეგიდასასრული  ჩანაწერთან გადასვლა: ძიებას დასჭირდა 0.31 წამი. 
1.
RD39 Status Report 2007 / RD39 Collaboration
CERN-LHCC-2007-028 ; LHCC-RD-014.
- 2007. - 30 p.
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2.
RD39 Status Report 2004 / Borer, K ; Janos, S ; Pretzl, K ; Chen, W ; Li, Z ; Da Vià, C ; Casagrande, L (CERN) ; Grohmann, S (CERN) ; Heijne, Erik H M (CERN) ; Lourenço, C (CERN) et al.
CERN-LHCC-2004-034 ; LHCC-RD-006.
- 2004. - 34 p.
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3.
RD39 Status Report 2003 / Borer, K ; Janos, S ; Pretzl, K ; Britvitch, I ; Kuznetsov, A A ; Musienko, Y ; Reucroft, S ; Swain, J ; Chen, W ; Li, Z et al.
CERN-LHCC-2003-060 ; LHCC-RD-003.
- 2003. - 28 p.
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4.
RD39 Status Report 2009 / Anbinderis, P ; Anbinderis, T ; Bates, R ; Bol, H ; Buttar, C ; Chen, W ; Cindro, V ; de Boer, W ; Eremin, V ; Gaubas, E et al.
RD39 Status Report 2009. [...]
CERN-LHCC-2010-004 ; LHCC-SR-002.
- 2010.
Fulltext
5.
Recent results from the CERN RD39 Collaboration on super-radiation hard cryogenic silicon detectors for LHC and LHC upgrade / Härkönen, J ; Abreu, M ; Anbinderis, P ; Anbinderis, T ; D'Ambrosio, N ; de Boer, Wim ; Borchi, E ; Borer, K ; Bruzzi, M ; Buontempo, S et al.
2004 - Published in : Nucl. Instrum. Methods Phys. Res., A 535 (2004) 384-388
In : 10th International Vienna Conference on Instrumentation, Vienna, Austria, 16 - 21 Feb 2004, pp.384-388
6.
RD39 Status Report 2008 / RD39 Collaboration
RD39 Status Report 2008
CERN-LHCC-2008-019 ; LHCC-SR-001.
- 2008.
Fulltext
7.
Recent progress in CERN RD39 : Radiation hard cryogenic silicon detectors for applications in LHC experiments and their future upgrades / Tuominen, E (Helsinki Inst. of Phys.) ; Anbinderis, P (Vilnius U.) ; Anbinderis, T (Vilnius U.) ; Bates, R (Glasgow U.) ; de Boer, W (Karlsruhe U., EKP) ; Borchi, E (Florence U.) ; Bruzzi, M (Florence U.) ; Buttar, C (Glasgow U.) ; Chen, W (Brookhaven) ; Cindro, V (Stefan Inst., Ljubljana) et al.
CERN RD39 Collaboration develops radiation-hard cryogenic silicon detectors. Recently, we have demonstrated improved radiation hardness in novel Current Injected Detectors (CID). [...]
2009 - Published in : IEEE Trans. Nucl. Sci. 56 (2009) 2119-2123 IEEE Published version, local copy: PDF;
8.
Low-temperature tracking detectors / Niinikoski, T O ; Abreu, M ; Anbinderis, P ; Anbinderis, T ; D'Ambrosio, N ; de Boer, Wim ; Borchi, E ; Borer, K ; Bruzzi, M ; Buontempo, S et al.
RD39 collaboration develops new detector techniques for particle trackers, which have to withstand fluences up to 10/sup 16/ cm/sup -2 / of high-energy particles. The work focuses on the optimization of silicon detectors and their readout electronics while keeping the temperature as a free parameter. [...]
2004 - Published in : Nucl. Instrum. Methods Phys. Res., A 520 (2004) 87-92
In : 10th International Workshop on Low Temperature Detectors, Genoa, Italy, 7 - 11 Jul 2003, pp.87-92
9.
Development of cryogenic tracking detectors for very high luminosity experiments / Härkönen, J (Helsinki Inst. of Phys.) ; Anbinderis, P (Vilnius U.) ; Anbinderis, T (Vilnius U.) ; Bates, R (Glasgow U.) ; de Boer, W (Karlsruhe U., EKP) ; Borchi, E (Florence U., Dip. di Energetica) ; Bruzzi, M (Florence U., Dip. di Energetica) ; Buttar, C (Glasgow U.) ; Chen, W (Brookhaven) ; Cindro, V (Stefan Inst., Ljubljana) et al.
Experimental results and simulations of Charge Collection Efficiency (CCE) of Current Injected Detectors (CIDs) are focused. CID is a concept where the current is limited by the space charge. [...]
2009 - Published in : Nucl. Instrum. Methods Phys. Res., A 607 (2009) 41-44
10.
Development of cryogenic Si detectors by CERN RD39 Collaboration for ultra radiation hardness in SLHC environment / Li, Z ; Abreu, M ; Anbinderis, P ; Anbinderis, T ; D’Ambrosio, N ; de Boer, Wim ; Borchi, E ; Borer, K ; Bruzzi, M ; Buontempo, S et al.
There are two key approaches in our CERN RD 39 Collaboration efforts to obtain ultra-radiation-hard Si detectors: (1) use of the charge/current injection to manipulate the detector internal electric field in such a way that it can be depleted at a modest bias voltage at cryogenic temperature range (150 K), and (2) freezing out of the trapping centers that affects the CCE at cryogenic temperatures lower than that of the liquid nitrogen (LN2) temperature. In our first approach, we have developed the advanced radiation hard detectors using charge or current injection, the current injected diodes (CID). [...]
2007 - Published in : Nucl. Instrum. Methods Phys. Res., A 572 (2007) 305-310
In : 10th Pisa Meeting on Advanced Detectors : Frontier Detectors For Frontier Physics, La Biodola, Italy, 21 - 27 May 2006, pp.305-310

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