A. Paladino
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View article: The SiPM readout plane for the ePIC-dRICH detector at the EIC: Overview and beam test results
The SiPM readout plane for the ePIC-dRICH detector at the EIC: Overview and beam test results Open
View article: The SiPM photodetector of the ePIC dual-radiator RICH at the EIC: overview and beam test results
The SiPM photodetector of the ePIC dual-radiator RICH at the EIC: overview and beam test results Open
The dual-radiator RICH (dRICH) detector of the ePIC experiment at the upcoming Electron-Ion Collider (EIC) will use silicon photomultipliers (SiPMs) for single-photon detection of Cherenkov light. Several novel INFN driven modular prototyp…
View article: The emerging role of left atrial strain in cardiovascular risk stratification for multiple myeloma patients undergoing carfilzomib therapy
The emerging role of left atrial strain in cardiovascular risk stratification for multiple myeloma patients undergoing carfilzomib therapy Open
Introduction Carfilzomib (CFZ) is a proteasome inhibitor used in the treatment of multiple myeloma (MM) known for its cardiotoxic adverse events. Cardio-Oncology guidelines emphasize cardiovascular risk assessment during cardiotoxic therap…
View article: Beam test results of the SiPM photodetector prototype for the ePIC-dRICH detector at the EIC
Beam test results of the SiPM photodetector prototype for the ePIC-dRICH detector at the EIC Open
Recent beam test results are presented for the prototype detector of the ePIC-dRICH forward particle-identification system at the EIC. A large-area prototype SiPM readout plane consisting of a total of up to 2048 3×3 mm 2 sensors has been …
View article: Reinstallation and performance of the Belle II Silicon Vertex Detector
Reinstallation and performance of the Belle II Silicon Vertex Detector Open
At the beginning of 2024, the data taking of the Belle II experiment resumed after the long-shutdown 1, required to install a new two-layer DEPFET detector (PXD) and upgrade accelerator components. The whole silicon tracker (VXD) was extra…
View article: ALCOR: A mixed-signal ASIC for the dRICH detector of the ePIC experiment at the EIC
ALCOR: A mixed-signal ASIC for the dRICH detector of the ePIC experiment at the EIC Open
View article: A large-area SiPM readout plane for the ePIC-dRICH detector at the EIC: Realisation and beam test results
A large-area SiPM readout plane for the ePIC-dRICH detector at the EIC: Realisation and beam test results Open
View article: Operational experience and performance of the Belle II silicon vertex detector after the first SuperKEKB long shutdown
Operational experience and performance of the Belle II silicon vertex detector after the first SuperKEKB long shutdown Open
The Belle II experiment searches for beyond-the-standard-model physics using the Belle II detector and SuperKEKB collider. The silicon vertex detector (SVD) is crucial for particle tracking. After the 1.5-year shutdown from June 2022, Run …
View article: LANDMARK comparison of early outcomes of newer-generation Myval transcatheter heart valve series with contemporary valves (Sapien and Evolut) in real-world individuals with severe symptomatic native aortic stenosis: a randomised non-inferiority trial
LANDMARK comparison of early outcomes of newer-generation Myval transcatheter heart valve series with contemporary valves (Sapien and Evolut) in real-world individuals with severe symptomatic native aortic stenosis: a randomised non-inferiority trial Open
View article: SiPM photosensors for the ePIC dual-radiator RICH detector at the EIC
SiPM photosensors for the ePIC dual-radiator RICH detector at the EIC Open
SiPMs are the baseline photodetector technology for the dual-radiator Ring-Imaging Cherenkov\n(dRICH) detector of the ePIC experiment at the future Electron-Ion Collider (EIC). SiPMs offer\nsignificant advantages being cheap devices, highl…
View article: A readout system based on SiPM for the dRICH detector at the EIC
A readout system based on SiPM for the dRICH detector at the EIC Open
The ePIC experiment at the future Electron-Ion Collider (EIC) aims to use silicon photomultipliers (SiPMs) as the photodetector technology for the dual-radiator ring-imaging Cherenkov detector (dRICH). Despite their advantages for this low…
View article: The Silicon Vertex Detector of the Belle II Experiment
The Silicon Vertex Detector of the Belle II Experiment Open
The Belle II experiment started data-taking in March 2019. The silicon vertex detector (SVD), part of the Belle II tracking system, has been operating smoothly and reliably.The data quality has been confirmed through various metrics such a…
View article: Performance and running experience of the Belle II silicon vertex detector
Performance and running experience of the Belle II silicon vertex detector Open
The Belle II silicon vertex detector is one of the vertex detectors in the Belle II experiment. The detector reads out the signals from the double-sided silicon strip sensors with the APV25 front-end readout ASIC, adopting the chip-on-sens…
View article: The silicon vertex detector of the Belle II experiment
The silicon vertex detector of the Belle II experiment Open
View article: Measurements of beam backgrounds in SuperKEKB Phase 2
Measurements of beam backgrounds in SuperKEKB Phase 2 Open
View article: Measurement of the cluster position resolution of the Belle II Silicon Vertex Detector
Measurement of the cluster position resolution of the Belle II Silicon Vertex Detector Open
View article: Measurements of Beam Backgrounds in SuperKEKB Phase 2
Measurements of Beam Backgrounds in SuperKEKB Phase 2 Open
The high design luminosity of the SuperKEKB electron-positron collider will result in challenging levels of beam-induced backgro\ unds in the interaction region. Understanding and mitigating these backgrounds is critical to the success of …
View article: The Silicon Vertex Detector of the Belle II Experiment
The Silicon Vertex Detector of the Belle II Experiment Open
In 2019 the Belle II experiment started data taking at the asymmetric\nSuperKEKB collider (KEK, Japan) operating at the Y(4S) resonance. Belle II will\nsearch for new physics beyond the Standard Model by collecting an integrated\nluminosit…
View article: A Study of Hit-time Reconstruction of Belle II Silicon Vertex Detector
A Study of Hit-time Reconstruction of Belle II Silicon Vertex Detector Open
For stable operation of the Belle II Silicon Vertex Detector in the future high-luminosity operation of SuperKEKB, we plan to reduce readout data-samples per trigger and to apply hit-selection using hit-time. To realize this plan, we devel…
View article: Particle Identification in Belle II Silicon Vertex Detector
Particle Identification in Belle II Silicon Vertex Detector Open
We report a particle identification (PID) tool developed using energy-loss information in the silicon-strip vertex detector (SVD) of Belle II for charged pions, kaons, and protons using \\(D^{* + } \\to D^{0}[ \\to K^{ - }\\pi ^{ + }]\\pi …
View article: The Belle II Silicon Vertex Detector: Performance and Operational Experience in the First Year of Data Taking
The Belle II Silicon Vertex Detector: Performance and Operational Experience in the First Year of Data Taking Open
In spring 2019 the Belle II experiment at the high-luminosity SuperKEKB e+e− collider (KEK, Japan) has resumed operation after the installation of the new vertex detector. In the first period of operation SuperKEKB has already reached the …
View article: The Belle II Silicon Vertex Detector: Performance and Running Experience
The Belle II Silicon Vertex Detector: Performance and Running Experience Open
In spring 2019 the fully equipped Belle II experiment started data taking at the energy of the Y(4S) resonance. The new vertex detector (VXD) consists of two inner layers of DEPFET pixels (PXD) and four outer layers of double-sided silicon…
View article: Performance of the diamond-based beam-loss monitor system of Belle II
Performance of the diamond-based beam-loss monitor system of Belle II Open
View article: The Belle II diamond-detector for radiation monitoring and beam abort
The Belle II diamond-detector for radiation monitoring and beam abort Open
The SuperKEKB electron-positron collider at the KEK laboratory in Japan aims to achieve a maximum luminosity 50$\\times$ higher than its predecessors KEKB and PEPII, positioning the Belle II experiment at the forefront of searches for non-…
View article: Performance of the Belle II Silicon Vertex Detector
Performance of the Belle II Silicon Vertex Detector Open
The Belle II experiment at the SuperKEKB collider of KEK (Japan) will accumulate 50 ab$^{-1}$ of e$^+$e$^-$ collision data at an unprecedented instantaneous luminosity of 8 $\\times 10^{35}$ cm$^{-2}$s$^{-1}$, about 40 times larger than it…
View article: Beam background study for the Belle II Silicon Vertex Detector
Beam background study for the Belle II Silicon Vertex Detector Open
View article: Performance of the Belle II Silicon Vertex Detector
Performance of the Belle II Silicon Vertex Detector Open
View article: Performance Studies of the Belle II Silicon Vertex Detector
Performance Studies of the Belle II Silicon Vertex Detector Open
The Belle II experiment at the SuperKEKB asymmetric-energy e+e− collider in KEK, Japan will operate at an instantaneous luminosity of 8×1035 cm−2s−1, which is about 40 times larger than that of its predecessor, Belle. It is built with the …
View article: Spatial Resolution of the Belle II Silicon Vertex Detector
Spatial Resolution of the Belle II Silicon Vertex Detector Open
The Belle II experiment at the SuperKEKB collider in Japan will search for new sources of CP violation and indirectly probe new physics by studying the suppressed decays of beauty mesons, charm mesons and tau leptons. In these pursuits, th…
View article: Construction and Quality Assurance of the Belle II Silicon Vertex Detector
Construction and Quality Assurance of the Belle II Silicon Vertex Detector Open
The Belle II experiment, which is situated at the interaction point of the SuperKEKB $e^+e^{-}$ collider at KEK, Tsukuba, Japan, is expected to collect data corresponding to an integrated luminosity of 50~ab$^{- 1}$. This data set will be …