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1.
Testbeam Characterization of a SiGe BiCMOS Monolithic Silicon Pixel Detector with Internal Gain Layer / Paolozzi, L. (Geneva U.) ; Milanesio, M. (Geneva U.) ; Moretti, T. (Geneva U.) ; Cardella, R. (Geneva U.) ; Kugathasan, T. (Geneva U.) ; Picardi, A. (Geneva U.) ; Elviretti, M. (CERN) ; Rücker, H. (CERN) ; Cadoux, F. (Geneva U.) ; Cardarelli, R. (Geneva U.) et al.
A monolithic silicon pixel ASIC prototype, produced in 2024 as part of the Horizon 2020 MONOLITH ERC Advanced project, was tested with a 120 GeV/c pion beam. [...]
arXiv:2412.07606.
- 18.
Fulltext
2.
First Measurement of the Muon Neutrino Interaction Cross Section and Flux as a Function of Energy at the LHC with FASER / Mammen Abraham, Roshan (UC, Irvine) ; Ai, Xiaocong (Zhengzhou U.) ; Anders, John (CERN) ; Antel, Claire (U. Geneva (main)) ; Ariga, Akitaka (Bern U., LHEP ; Chiba U.) ; Ariga, Tomoko (Kyushu U., Fukuoka (main)) ; Atkinson, Jeremy (Bern U., LHEP) ; Bernlochner, Florian U. (U. Bonn (main)) ; Boeckh, Tobias (U. Bonn (main)) ; Boyd, Jamie (CERN) et al.
This letter presents the measurement of the energy-dependent neutrino-nucleon cross section in tungsten and the differential flux of muon neutrinos and anti-neutrinos. The analysis is performed using proton-proton collision data at a center-of-mass energy of 13.6 TeV and corresponding to an integrated luminosity of (65.6 ± 1.4) fb−1. [...]
arXiv:2412.03186; CERN-EP-2024-309.- Geneva : CERN, 2024 - 15 p. Draft (restricted): PDF; Fulltext: CERN-EP-2024-309 - PDF; 2412.03186 - PDF;
3.
Shining Light on the Dark Sector - Searches for Axion-like Particles and Other New Physics in Photonic Final States with FASER / FASER Collaboration
The first FASER search for a light, long-lived particle decaying into a pair of photons is reported. [...]
arXiv:2410.10363 ; CERN-EP-2024-262.
- 2024 - 37.
Full text - Draft (restricted) - Fulltext
4.
Testbeam results of irradiated SiGe BiCMOS monolithic silicon pixel detector without internal gain layer / Moretti, T. (Geneva U.) ; Milanesio, M. (Geneva U.) ; Cardella, R. (Geneva U.) ; Kugathasan, T. (Geneva U.) ; Picardi, A. (Geneva U. ; CERN) ; Semendyaev, I. (Geneva U.) ; Elviretti, M. (IHP, Frankfurt) ; Rücker, H. (IHP, Frankfurt) ; Nakamura, K. (KEK, Tsukuba) ; Takubo, Y. (KEK, Tsukuba) et al.
Samples of the monolithic silicon pixel ASIC prototype produced in 2022 within the framework of the Horizon 2020 MONOLITH ERC Advanced project were irradiated with 70 MeV protons up to a fluence of 1 x 1016 neq/cm2, and then tested using a beam of 120 GeV/c pions. The ASIC contains a matrix of 100 μ m pitch hexagonal pixels, readout out by low noise and very fast frontend electronics produced in a 130 nm SiGe BiCMOS technology process. [...]
arXiv:2404.12885.- 2024-07-29 - 15 p. - Published in : JINST 19 (2024) P07036 Fulltext: 2404.12885 - PDF; Publication - PDF;
5.
First measurement of the $\nu_e$ and $\nu_\mu$ interaction cross sections at the LHC with FASER’s emulsion detector / FASER Collaboration
This paper presents the first results of the study of high-energy electron and muon neutrino charged-current interactions in the FASER$\nu$ emulsion/tungsten detector of the FASER experiment at the LHC. A subset of the FASER$\nu$ volume, which corresponds to a target mass of 128.6~kg, was exposed to neutrinos from the LHC $pp$ collisions with a centre-of-mass energy of 13.6~TeV and an integrated luminosity of 9.5 fb$^{-1}$. [...]
arXiv:2403.12520; CERN-EP-2024-079.- Geneva : CERN, 2024-07-11 - 12 p. - Published in : Phys. Rev. Lett. 133 (2024) 021802 Draft (restricted): PDF; Fulltext: CERN-EP-2024-079 - PDF; 2403.12520 - PDF; Publication - PDF;
6.
Neutrino Rate Predictions for FASER / FASER Collaboration
The Forward Search Experiment (FASER) at CERN's Large Hadron Collider (LHC) has recently directly detected the first collider neutrinos. Neutrinos play an important role in all FASER analyses, either as signal or background, and it is therefore essential to understand the neutrino event rates. [...]
arXiv:2402.13318.- 2024-07-01 - 19 p. - Published in : Phys. Rev. D 110 (2024) 012009 Fulltext: PDF;
7.
Radiation tolerance of SiGe BiCMOS monolithic silicon pixel detectors without internal gain layer / Milanesio, M. (Geneva U.) ; Paolozzi, L. (Geneva U. ; CERN) ; Moretti, T. (Geneva U.) ; Cardella, R. (Geneva U.) ; Kugathasan, T. (Geneva U.) ; Martinelli, F. (Geneva U.) ; Picardi, A. (Geneva U. ; CERN) ; Semendyaev, I. (Geneva U.) ; Zambito, S. (Geneva U.) ; Nakamura, K. (KEK, Tsukuba) et al.
A monolithic silicon pixel prototype produced for the MONOLITH ERC Advanced project was irradiated with 70 MeV protons up to a fluence of 1 x 10^16 1 MeV n_eq/cm^2. The ASIC contains a matrix of hexagonal pixels with 100 μm pitch, readout by low-noise and very fast SiGe HBT frontend electronics. [...]
arXiv:2310.19398.- 2024-01-15 - 13 p. - Published in : JINST 19 (2024) P01014 Fulltext: 2310.19398 - PDF; publication - PDF;
8.
20 ps time resolution with a fully-efficient monolithic silicon pixel detector without internal gain layer / Zambito, S. (Geneva U.) ; Milanesio, M. (Geneva U.) ; Moretti, T. (Geneva U.) ; Paolozzi, L. (Geneva U. ; CERN) ; Munker, M. (Geneva U.) ; Cardella, R. (Geneva U.) ; Kugathasan, T. (Geneva U.) ; Martinelli, F. (Geneva U.) ; Picardi, A. (Geneva U. ; CERN) ; Elviretti, M. (Leibniz U., Hannover) et al.
A second monolithic silicon pixel prototype was produced for the MONOLITH project. The ASIC contains a matrix of hexagonal pixels with 100 μm pitch, readout by a low-noise and very fast SiGe HBT frontend electronics. [...]
arXiv:2301.12244.- 2023-03-28 - 16 p. - Published in : JINST Fulltext: 2301.12244 - PDF; Publication - PDF;
9.
Gain measurements of the first proof-of-concept PicoAD prototype with a 55Fe X-ray radioactive source / Milanesio, M (Geneva U.) ; Iacobucci, G (Geneva U.) ; Paolozzi, L (Geneva U. ; CERN) ; Munker, M (Geneva U.) ; Cardella, R (Geneva U.) ; Gurimskaya, Y (CERN) ; Martinelli, F (Geneva U.) ; Picardi, A (Geneva U.) ; Rücker, H (IHP, Frankfurt) ; Trusch, A (IHP, Frankfurt) et al.
The Picosecond Avalanche Detector is a multi-junction silicon pixel detector devised to enable charged-particle tracking with high spatial resolution and picosecond time-stamping capability. A proof-of-concept prototype of the PicoAD sensor has been produced by IHP microelectronics. [...]
2023 - 3 p. - Published in : Nucl. Instrum. Methods Phys. Res., A 1046 (2023) 167807 Fulltext: PDF;
In : 15th Pisa Meeting on Advanced Detectors, La Biodola - Isola D'elba, It, 22 - 28 May 2022, pp.167807
10.
Picosecond Avalanche Detector — working principle and gain measurement with a proof-of-concept prototype / Paolozzi, L. (Geneva U. ; CERN) ; Munker, M. (Geneva U.) ; Cardella, R. (Geneva U.) ; Milanesio, M. (Geneva U.) ; Gurimskaya, Y. (Geneva U.) ; Martinelli, F. (Geneva U.) ; Picardi, A. (Geneva U. ; CERN) ; Rücker, H. (IHP, Frankfurt) ; Trusch, A. (IHP, Frankfurt) ; Valerio, P. (Geneva U.) et al.
The Picosecond Avalanche Detector is a multi-junction silicon pixel detector based on a $\mathrm{(NP)_{drift}(NP)_{gain}}$ structure, devised to enable charged-particle tracking with high spatial resolution and picosecond time-stamp capability. It uses a continuous junction deep inside the sensor volume to amplify the primary charge produced by ionizing radiation in a thin absorption layer. [...]
arXiv:2206.07952.- 2022-10-20 - 15 p. - Published in : JINST 17 (2022) P10032 Fulltext: 2206.07952 - PDF; Publication - PDF;

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