CERN Accelerating science

CERN Doctoral Student Program

Последние добавления:
2021-11-09
12:00
Damage mechanisms in superconductors due to the impact of high energy proton beams and radiation tolerance of cryogenic diodes used in particle accelerator magnet systems / Will, Andreas
High energy hadron accelerators such as the Large Hadron Collider (LHC) at CERN and its planned upgrade to achieve higher luminosity, the High Luminosity Large Hadron Collider (HL-LHC), require superconducting magnets to provide strong magnetic fields, needed to steer and focus the particle beams at [...]
CERN-THESIS-2021-187 DOI:10.5445/IR/1000134497. - Karlsruhe : Karlsruher Institut für Technologie (KIT), 2021-07-02. - 156 p.


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2021-10-17
08:42
Characterisation of a High-Voltage Monolithic Active Pixel Sensor Prototype for Future Collider Detectors / Kroeger, Jens
The physics goals and operating conditions at existing and proposed high-energy colliders, such as the Compact Linear Collider (CLIC), pose challenging demands on the performance of their detector systems [...]
CERN-THESIS-2021-167 -


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2021-10-14
17:36
Algorithms for processing of large data sets using distributed architectures and load balancing / Subrt, Ondrej
Modern experiments in high energy physics impose great demands on the reliability, the efficiency, and the data rate of Data Acquisition System (DAQ) [...]
CERN-THESIS-2020-368 - 214 p.


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2021-10-08
18:45
Thermodynamic and technological optimization of complex cryogenic insulation systems / Venturi, Valentina
Future accelerators like the Future Circular Collider (FCC) [24] under study at CERN, will be considerably larger than the Large Hadron Collider (LHC) [18] presently in operation, with consequently increasing demands for cryogenically ef- ficient cryostat solutions [...]
CERN-THESIS-2020-367 - Wrocław : POLITECHNIKA WROCŁAWSKA WYDZIAŁ MECHANICZNO-ENERGETYCZNY, 2019-04-01. - 104 p.


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2021-09-20
14:19
Mechanical characterisation of Nb3Sn Rutherford cable stacks / Wolf, Felix Josef
Nb3Sn Rutherford cables are used in CERN’s superconducting 11 T dipole and MQXF quadrupole magnets, which are proposed for the instantaneous luminosity (rate of particle collisions) upgrade of the Large Hadron Collider (LHC) by a factor of five to a High Luminosity-Large Hadron Collider (HL-LHC).. [...]
CERN-THESIS-2021-140 - 159 p.


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2021-09-02
20:11
Development of an Electrostatic Ion Beam Trap for Laser Spectroscopy of Short-lived Radionuclides / Lagaki, Varvara
Due to its high accuracy and resolution, collinear laser spectroscopy (CLS) is a powerful tool to measure nuclear ground state properties such as nuclear spins, electromagnetic moments and mean-square charge radii of short-lived radionuclides [...]
CERN-THESIS-2021-120 -


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2021-08-27
15:06
Dependable System Development Methodology and Case Study for the LHC Beam Loss Monitoring System at CERN / Schramm, Volker
The Beam Loss Monitoring system acts as a protection system of the Large Hadron Collider at CERN [...]
CERN-THESIS-2020-362 D93 ; ISBN978-3-936100-98-3. - Stuttgart, GER : Berichte aus dem Institut für Maschinenelemente, 2021-07-12. - 172 p.


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2021-08-06
15:03
Local Optics Corrections in the HL-LHC / Coello De Portugal - Martinez Vazquez, Jaime Maria
In order to push the performance of current and future particle colliders, it is necessary to drive the beams at the locations of the experiments to decreasingly smaller sizes [...]
CERN-THESIS-2021-104 - 93 p.


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2021-07-20
09:50
Self-Modulation Development of a Proton Bunch in Plasma / Bachmann, Anna-Maria
CERN-THESIS-2021-094 - http://mediatum.ub.tum.de/?id=1595621 : mediaTUM, 2021-07-16.


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2021-07-13
15:39
Direct Digitisation for Position Measurement of Charged Particle Beams: Sampling and Quantisation Effects on Resolution / Degl'Innocenti, Irene
With the technology improvements of Analog-to-Digital Converters (ADC), notable in terms of sampling rate and achievable resolution, the direct digitisation of beam pickup signals is of growing interest in the field of particle beam diagnostics for charged particle accelerators [...]
CERN-THESIS-2020-357 -


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