Conveners
Posters: Posters and Exibitions
- Seth Zenz (Queen Mary University of London)
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Konrad Sutowski (STFC)02/09/2026, 13:00Applications in Nuclear PhysicsPoster
The R3B Target Recoil Tracker (TRT) is a silicon-based detector system being developed for the Facility for Antiproton and Ion Research (FAIR) accelerator complex in Darmstadt (DE). The TRT is designed to measure recoil particles produced in a fixed target by relativistic radioactive beams, enabling precise reconstruction of reaction kinematics and contributing to the study of exotic nuclei...
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William Saenz (ILL)02/09/2026, 13:01Detectors for Neutron FacilitiesPoster
3He-based gaseous neutron detectors have demonstrated adaptability across a wide range of applications, from elementary particle physics to neutron imaging. Depending on experimental requirements, detector volumes range from a few centiliters to several hundred liters. This work presents the development of a 3-meter-high two-dimensional Multitube detector designed for the Cold Chopper...
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Svetlana Kushpil (Czech Academy of Sciences (CZ))02/09/2026, 13:02Applications in Nuclear PhysicsPoster
Svetlana Kushpil for the ALICE Collaboration
The Inner Tracking System (ITS2) of the ALICE experiment at the CERN
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Large Hadron Collider is based on a Monolithic Active Pixel Sensor technology.
Installed during the Long Shutdown 2 (LS2), it has been operating in LHC
Run 3 and successfully collected data from pp, PbโPb, OโO, NeโNe collisions.
The ITS2 consists of seven concentric layers... -
Andrew Mastronikolis (Imperial College (GB))02/09/2026, 13:03Detectors for High Radiation & Extreme EnvironmentsPoster
The High-Luminosity LHC (HL-LHC) will operate with up to 200 simultaneous protonโproton interactions per bunch crossing, requiring upgraded detector readout, triggering, and data acquisition systems. The Phase-2 CMS Outer Tracker introduces new detector modules and a trigger architecture designed to contribute to online trigger decisions within 12.5 $\mu$s. Demonstrating the performance and...
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Dr John Matheson (Diamond Light Source)02/09/2026, 13:04Detectors for Synchrotrons, FELS & Other Advanced Light SourcesPoster
The Jungfrau family of detectors has been developed by the Paul Scherrer Institute (PSI), Switzerland. These are state of the art pixel detectors, using integrating front-end electronics and adaptive gain, to deliver a very large dynamic range. This type of architecture, developed for FELs, will be increasingly used at upgraded synchrotron light sources. Jungfrau detectors are based on 0.5...
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Wei Wei02/09/2026, 13:05Detectors for Synchrotrons, FELS & Other Advanced Light SourcesPoster
HEPS (High Energy Photon Source) is the first fourth-generation light source in China, featuring high-energy, high-luminosity X-rays. Since more than half of its end stations generate photon energies above 25 keV, high-Z detectors are essential. Additionally, advanced experiments such as X-ray Photon Correlation Spectroscopy (XPCS) and ultrafast dynamics studies necessitate detectors with high...
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Calvin Dyson, Calvin Dyson, Calvin Dyson02/09/2026, 13:06Applications in Life Sciences, Biology & MedicinePoster
The ion-acoustic effect generates images of the ion-dose distribution
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from the ultrasound produced when an energetic, fast pulse of ionizing
particles interact in an appropriate medium. We recorded the light excited in a liquid scintillator as a cross-check of the waves simultaneously
recorded using ultrasonic sensors.
In earlier work we used ANSYS ZEMAX in non-nequential ray-tracing
mode... -
Emily Richardson02/09/2026, 13:07X-ray & Gamma Ray DetectorsPoster
The Segmented Inverted Coaxial Germanium (SIGMA) detector is a p-type, large-volume High Purity Germanium (HPGe) detector developed for gamma-ray tracking and imaging. Highly segmented germanium detectors are well-suited to a wide range of applications, including spectroscopic gamma-ray imaging for nuclear decommissioning and deployment in portable detector arrays at international accelerator...
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Xiongbo Yan (Institute of High Energy Physics), hangqi chen (nanjing university)02/09/2026, 13:08Applications in Particle PhysicsPoster
Optical data transmission is essential for on-detector readout electronics in large particle physics experiments. Multi-level pulse amplitude modulation (PAM4) can increase the single-channel data rate without altering the analog bandwidth, thereby reducing the number of data transmission channels and the material budget. In 55-nm CMOS, a 20-Gbps transmitter has been designed for front-end...
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Jan Broulim (Czech Technical University in Prague (CZ)), Karolina Lavickova (Czech Technical University in Prague (CZ))02/09/2026, 13:09Advances in Pixel Detectors & Integration TechnologiesPoster
In this contribution, we present the first characterization measurements of the ColorPix-3 ASIC integrated with the UniCorn readout interface. ColorPix-3 features a 32 ร 32 pixel matrix with a pixel pitch of 70 ฮผm and is designed for high-resolution, position-sensitive, and energy-resolved X-ray imaging. A 2 mm-thick CZT sensor layer is bump-bonded to the ASIC and serves as the detection...
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Xiaoting Li (IHEP), ่่พ jianghui (The Institute of High Energy Physics)02/09/2026, 13:10Applications in Particle PhysicsPoster
The time-to-digital converter (TDC) is an essential instrument for achieving picosecond-level time resolution and finds widespread application in fields such as high-energy physics and time-of-flight positron emission tomography (TOF-PET). In this work, a TDC core, referred to as xpcTDC, is developed based on a circular-interpolation scheme. The TDC consists of four functional blocks: a...
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้ปๆ่ฑช huangwenhao02/09/2026, 13:11Applications in Particle PhysicsPoster
Future high-energy physics experiments and highly-granulated silicon detectors impose stringent requirements on readout electronics regarding power consumption, footprint, and timing precision. This report presents LATRICi, a pulse-interleaved time-to-digital converter (TDC) implemented in a 55nm CMOS process. As an evolution of the initial LATRIC0 prototype, which utilized an event-driven...
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Lidia Lappo (Warsaw University of Technology)02/09/2026, 13:12Gas-based Detection MethodsPoster
Resistive Plate Chambers (RPCs) are widely used detectors in high-energy physics and related fields. Front-end electronics is driving cost in large-scale RPC systems. This contribution presents a comparative study of two novel readout strategies for the reduction of front-end electronics (FEE) channel count while preserving adequate spatial resolution and timing performance: TOMAR...
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Ms Donghee Kim (Yonsei University)02/09/2026, 13:13Applications in Condensed MatterPoster
Lithium-ion batteries (LIBs) are used to power electric wheelchairs owing to their high energy density and long lifespan. LIB modules for wheelchairs consist of densely packed cells, and non-destructive testing is required to detect internal defects. This study aims to suggest the proper instrument configuration and CT reconstruction method for LIB module-level inspection which remains...
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Adrian Bevan (Queen Mary University of London (GB))02/09/2026, 13:14Applications in Particle PhysicsPoster
The Belle II experiment currently records data at the SuperKEKB $e^+e^-$
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collider, which holds the world luminosity record of $5.2\times10^{34}$
$\textrm{cm}^{-2}\textrm{s}^{-1}$ and plans to push up to
$6\times10^{35}\textrm{cm}^{-2}\textrm{s}^{-1}$, after an upgrade
of its interaction region. To cope with the increased backgrounds, a new
fully pixelated vertex detector is under design.... -
Isabella Oceano02/09/2026, 13:15Applications in Particle PhysicsPoster
Neutron spectroscopy is an invaluable tool for a wide range of scientific and industrial applications, including underground dark matter searches. Neutron-induced backgrounds originating from cosmic-ray muons and cavern radioactivity can mimic the expected dark matter signal and therefore constitute a major source of background in rare-event experiments. However, current neutron detection...
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Benjamin Lawrence-Sanderson (Northwestern University (US))02/09/2026, 13:16Applications in Particle PhysicsPoster
High-rate position-sensitive silicon trackers increasingly require real-time reconstruction close to the detector readout in order to reduce data volumes before storage. The MUonE experiment is a proposed fixed-target experiment at the CERN M2 beamline designed to independently measure the hadronic leading-order corrections to the muon anomalous magnetic moment ($g-2$). It consists of a...
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Theodoros Manoussos02/09/2026, 13:17Applications in Particle PhysicsPoster
The HGTD is a novel detector introduced by ATLAS to augment the new all silicon Inner Tracker (ITk) in the pseudorapidity range from 2.4 to 4.0, adding the capability to measure charged-particle trajectories in time as well as space. Two double-sided layers of silicon sensors will provide precision timing information for charged particles with a resolution as good as 30 ps per track to help...
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Christina Giallombardo (University of Zurich (CH))02/09/2026, 13:18Applications in Particle PhysicsPoster
The High-Luminosity upgrade of the Large Hadron Collider (HL-LHC) will push the performance of tracking detectors to unprecedented levels, with instantaneous luminosities reaching up to $7.5 \times 10^{34}\,\mathrm{cm}^{-2}\,\mathrm{s}^{-1}$. To operate under these extreme conditions, the CMS experiment will replace its current tracking system during Long Shutdown~3 with a new Inner Tracker...
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Roberto Preghenella (INFN, Bologna (IT))02/09/2026, 13:19Novel Photon Detection SystemsPoster
The dual-radiator Ring Imaging Cherenkov detector (dRICH) of the ePIC experiment at the future ElectronโIon Collider will provide charged-hadron particle identification in the hadron-going region over a broad momentum range. Cherenkov photons will be detected by a large-area, position-sensitive silicon photomultiplier photodetector plane covering about 3 mยฒ, with 3 ร 3 mmยฒ pixels and more than...
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FATIMA ZAHRA RIMCHI (Faculty of Sciences, Mohammed First University, Oujda, Morocco)02/09/2026, 13:20Applications in Life Sciences, Biology & MedicinePoster
The Hybrid Laser Accelerator for Radiobiological Applications (LhARA) is designed as an innovative, flexible, and low-cost facility dedicated to the systematic study of the radiobiological effects of particle beam therapy. Capable of delivering instantaneous dose rates that not only reach but also surpass the conventional โFLASHโ regime with ultra-high dose rate.
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However, monitoring such... -
Robert James Ward (Hamburg University (DE))02/09/2026, 13:21Gas-based Detection MethodsPoster
The spherical proportional counter (SPC) is a versatile gaseous detector with a variety of physics applications from fast neutron spectroscopy to rare events searches such as the direct detection of dark matter. The electric field established by the spherical geometry of the detector grants typical single-anode SPCs sensitivity to the radial position of ionising events via the drift of primary...
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Nicola Mazziotta (Universita e INFN, Bari (IT))02/09/2026, 13:22X-ray & Gamma Ray DetectorsPoster
The Antarctic Demonstrator for the Advanced Particle-astrophysics Telescope (ADAPT) is a NASA suborbital mission for a high-altitude balloon flight over Antarctica, which is anticipated to fly in the 2026-27 season. ADAPT validates key technologies for the future space-based APT, which aims for an order of magnitude improvement in MeV-TeV gamma-ray sensitivity. This presentation details the...
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Lara Malpas (University of York)02/09/2026, 13:23Gas-based Detection MethodsPoster
The novel ๐-RWELL MPGD is a proven high-gain, spark-resistant, single-amplification stage providing versatility in its applications within nuclear astrophysics, medical physics, and nuclear security industries. In this study, the ๐-RWELL is tested for its position resolution in a cylindrical active-target time projection chamber, TACTIC (TRIUMF Annular Chamber for Tracking and Identification...
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Andrew Farnworth (Loughborough University)02/09/2026, 13:24X-ray & Gamma Ray DetectorsPoster
Charge sharing deteriorates the spatial and spectral performance of spectroscopic imaging systems which exploit the small-pixel effect, such as HEXITEC. As charge sharing may be produced by multiple non-exclusive physical processes, a diverse range of charge carrier behaviours exist within charge sharing events โ with each multipixel event containing process-specific spatial and spectral...
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Inna Makarenko (Vrije Universiteit Brussel (BE))02/09/2026, 13:25Applications in Particle PhysicsPoster
In view of the High-Luminosity upgrade of the Large Hadron Collider, the silicon tracker of the Compact Muon Solenoid detector will be fully replaced within the Phase-2 upgrade to cope with luminosities increased by about an order of magnitude compared to LHC design luminosity, and up to 200 simultaneous interactions per bunch crossing. In addition, the new tracker will provide tracking...
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Ali Awais (Queen Mary University of London)02/09/2026, 13:26Poster
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Djemouai DJAMAI (Laboratory of Engineering and Sciences of Advanced Materials (ISMA))02/09/2026, 13:27Detectors for High Radiation & Extreme EnvironmentsPoster
To meet the stringent requirements of the High Luminosity LHC (HL-LHC) upgrade, the ATLAS inner tracker (ITk) requires silicon sensors with exceptional radiation hardness and maximized geometrical efficiency. Active edge technology is essential to minimize inactive peripheral areas; however, accurately predicting their behavior under extreme radiation remains a challenge. This work presents a...
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Jiayi REN02/09/2026, 13:28Detectors for Neutron FacilitiesPoster
The China Spallation Neutron Source (CSNS) is undergoing an upgrade to CSNS-II, targeting an increase in proton beam power to 500 kW. This upgrade imposes stringent requirements on neutron detector readout electronics, including operation under vacuum conditions, higher counting rates, improved spatial resolution, and reduced power consumption. Conventional discrete-component front-end...
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Huirong Qi (Institute of High Energy Physics, CAS)02/09/2026, 13:29Applications in Particle PhysicsPoster
The Circular Electron Positron Collider Technical Design Report (TDR), as a Higgs and high luminosity Z factory, has been released 2025 at Institute of High Energy Physics, CAS in China. The baseline design of a detector concept consists of a large 3D tracking system, which is a high precision (about 100ฮผm) spatial resolution Time Projection Chamber (TPC) detector as the main track embedded in...
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Elizabeth Sarah Long (Charles University (CZ))02/09/2026, 13:30Applications in Particle PhysicsPoster
The GigaTracKer is a hybrid silicon pixel detector of the fixed-target experiment NA62 at the CERN SPS that aims to precisely measure the branching ratio of the very rare $K^+ \rightarrow \pi^+ \nu \bar{\nu}$ decay. The detector was designed to provide measurements of the momentum, direction, and time of beam particles arriving at a rate of 750 MHz. The tracking system consists of four...
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Mr Sami Ullah Khan (University of Padua & INFN Turin)02/09/2026, 13:31X-ray & Gamma Ray DetectorsPoster
Fully depleted CMOS monolithic active pixel sensors represent a promising technology for compact, low-power and high-resolution X-ray imaging systems, with potential applications in space instrumentation and medical imaging. In this work, we present the characterisation of ARCADIA CMOS pixel sensors developed in a 110 nm CMOS imaging technology, with emphasis on their electrical, readout and...
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Li Yu02/09/2026, 13:32Detectors for Neutron FacilitiesPoster
To support cutting-edge research, including high-resolution structural analysis and high-precision stress-strain measurements, the general-purpose powder diffractometer (GPPD) at the China Spallation Neutron Source (CSNS) is in urgent need of an upgrade, with the performance enhancement of scintillator neutron detectors as the core technical strategy. Expanding the effective detection coverage...
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Konrad Sutowski (STFC)02/09/2026, 13:33X-ray & Gamma Ray DetectorsPoster
A new and unproven technology is being explored to potentially enable and radically change the use of HPGe sensors with existing room temperature ASICs in hybrid pixel detectors. The goal is to control high temperature gradients (~130 C) over a short distance (100โs ฮผm) between HPGe sensors and ASICs. A micro-thermal divider translates the physics requirements set by the Fourierโs Law of heat...
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Ceyhan Sam (University of Birmingham (GB))02/09/2026, 13:34Position Sensitive Fast Timing DetectorsPoster
Fast and radiation-hard silicon timing detectors with tracking functionality are becoming increasingly important for future generation experiments. We present the intra-pixel timing performance of irradiated planar silicon sensors and compare with previous results obtained with non-irradiated devices. Detailed intra-pixel maps reveal structured non-uniformities in the intra-pixel timing...
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Mr Samuel Wood (University of Oxford)02/09/2026, 13:35Detectors for Synchrotrons, FELS & Other Advanced Light SourcesPoster
Low-gain avalanche detectors (LGADs) have strong potential as next-generation sensors and imagers in photon science, especially for soft X-ray beamlines at synchrotron light sources. Their intrinsic gain provides higher signal-to-noise ratios when compared to traditional planar sensors, enabling direct detection of soft X-rays which would otherwise not be possible with hybrid imagers. While...
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Dr Matthew Veale (UKRI Science & Technology Facilities Council)02/09/2026, 13:36Detectors for Synchrotrons, FELS & Other Advanced Light SourcesPoster
The STFC Technology Departmentโs Detector Development Group have been developing detectors for X-ray photon science for over two decades. The group have developed a broad range of camera systems during this time that have included silicon-based imagers like the Large Pixel Detector (LPD) for the European XFEL [1] as well as hundreds of modules of our HEXITEC spectroscopic imaging detectors...
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Fernanda Zapata Bascuรฑรกn (National University of San Martรญn (UNSAM))02/09/2026, 13:37Advances in Pixel Detectors & Integration TechnologiesPoster
We present a background-referenced method for localizing the spatial response associated with a wavelength-shifting (WLS) fiber using hierarchical DBSCAN clustering, without imposing a predefined fiber position.
The methodology was evaluated using experimental data acquired from a detector setup combining a WLS fiber embedded in a shielded scintillator bar, a pixelated photosensor,...
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Alessandro Sturniolo (University of Liverpool (GB))02/09/2026, 13:38Advances in Pixel Detectors & Integration TechnologiesPoster
A major upgrade of the ALICE experiment is foreseen for Run 5 of the LHC. The new retractable Vertex Detector (VD) is a crucial component of the upgraded experiment and will achieve an unprecedented pointing resolution owing to its close proximity to the interaction point, with three layers installed inside the beam pipe, in combination with a low material budget. Monolithic Active Pixel...
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Xiaoting Li (IHEP)02/09/2026, 13:39Applications in Particle PhysicsPoster
In applications such as particle physics experiments, synchrotron radiation facilities, space exploration, and medical imaging, high-speed serial links are essential for data transmission between front-end and back-end systems. The development of high-performance clock data recovery (CDR) and phase-locked loop (PLL) circuits represents a key focus in the design of such systems. The proposed...
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Gaรซl Chevrier (IPHC CNRS)02/09/2026, 13:40Applications in Particle PhysicsPoster
Monolithic Active Pixel Sensors (MAPS) have demonstrated excellent performance in the field of high-energy physics, especially with improved timing performance with respect to standard CMOS imaging sensor. Their application to low-energy spectroscopy seems promising, however, requires dedicated sensor optimization in order to minimize the inactive entrance layer and enhance charge collection...
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Alexander Duncalf (University College London)02/09/2026, 13:41X-ray & Gamma Ray DetectorsPoster
Edge illumination X-ray phase-contrast imaging (EI-XPCI) can allow dose reductions at constant image SNR, with great prospective benefit to biomedical applications. Photon counting detectors offer a route to this by providing a Poissonian response while eliminating read-out noise with appropriate energy thresholds, unlike energy integrating detectors where additive dark noise becomes...
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Gregory Lusk (West Virginia University)02/09/2026, 13:42Applications in Planetary & Space SciencePoster
For ultra-large constellation missions (greater than 1,000 spacecraft) to be feasible, each instrument on each spacecraft must be compact, low-cost, easy to manufacture, and require minimal resources. For low-energy plasma instruments, these constraints apply to both the plasma spectrometer and the particle detector. The ideal particle detector operates at low-voltage, is light-blind, and has...
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Nicola Nicassio (Universita e INFN, Bari (IT))02/09/2026, 13:43Applications in Particle PhysicsPoster
The ALICE Collaboration is proposing a completely new apparatus, ALICE 3, to investigate the properties of the quark--gluon plasma in heavy-ion collisions during LHC Run 5. A key PID subsystem in the barrel region will be a proximity-focusing Ring-Imaging Cherenkov detector (bRICH). It will cover a radial region of 36 cm, using aerogel ($n = 1.03$) as radiator and silicon photomultipliers...
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Ms Gabriela Jazvac (Institute for Medical Research and Occupational Health)02/09/2026, 13:44X-ray & Gamma Ray DetectorsPoster
Current positron emission tomography (PET) systems use a high number of readout channels to support high spatial resolution, incurring high cost and complexity. Introducing multiplexed light-sharing readouts reduces the number of necessary channels. However, they suffer from edge effects due to differences in light sharing architecture at the scintillator matrix edge compared to the center,...
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้ไบ่ตท dengyq (Central China Normal University๏ผInstitute of High Energy Physics)02/09/2026, 13:45Applications in Particle PhysicsPoster
The Circular Electron Positron Collider (CEPC) is proposed for Higgs boson studies and will employ Silicon Photomultipliers (SiPMs) extensively in calorimeter detectors. This work presents SIPAC, a dedicated SiPM readout ASIC for calorimeters, implemented in a 55-nm CMOS process. To accommodate the relatively slow SiPM signals after crystal conversion, a voltage amplifier is adopted as the...
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Divij Gupta (Queen Mary University of London)02/09/2026, 13:46Poster
Alternatives to He3 gas based neutron detectors have long been sought after following increasing shortages in the last decades. While some technologies exist, organic electronics have seen widespread scientific interest use due to their tunability, scalability and cost-effectiveness. This project builds on these paradigms to present an organic semiconductor based fast neutron camera, with...
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Yunyun Fan (Chinese Academy of Sciences (CN))02/09/2026, 13:47Detectors for High Radiation & Extreme EnvironmentsPoster
To provide precicely bunch-to-bunch luminosity measurement of SuperKEKB, the fast luminosity detector should have less than 4 ns signal width and be radiaitonharded. At SuperKEKB, this has been demonstrated using CVD diamond detectors at 4m from the IP. LGADs (Low Gain Avalanche Diode) have recently been installed at SuperKEKB and tested as a potential alternative with the Lumibelle2...
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Oliver Pickford Scienti (Institute of Cancer Research)02/09/2026, 13:48Quantum DetectorsPoster
Motivation: Spectral photon counting CT (SPCCT) is widely accepted as a major medical advancement, bringing the potential for quantitative molecular imaging at higher speeds than conventional approaches. Realising this potential is currently limited by the cost and spectral performance of the semiconductors used for the sensor material, e.g. CdTe. Recently, interest has grown around...
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้ปๆ่ฑช huangwenhao02/09/2026, 13:49Novel Photon Detection SystemsPoster
This paper presents a monolithically integrated single-photon avalanche diode (SPAD) detector and its transimpedance amplifier (TIA) readout circuit, designed and fabricated in a SMIC 55 nm CMOS process. Two different SPAD structures are designed: a shallow-junction avalanche region structure (Structure I) and a deep-junction avalanche region structure (Structure II). Detectors of both...
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Henry Hiltunen (LUT University)02/09/2026, 13:50Detectors for High Radiation & Extreme EnvironmentsPoster
Radiation hardness is a vital property of sensors used in high-energy physics experiments. Significant effort has been made to develop particle detectors for the harsh radiation environments of the Large Hadron Collider (LHC) and the High-Luminosity Large Hadron Collider (HL-LHC). One suitable candidate material, silicon grown with the magnetic Czochralski method, possesses a high intrinsic...
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Albanik Gashi (Queen Mary University of London)02/09/2026, 13:51Applications in Security & Environmental ImagingPoster
Nuclear decommissioning demands a complete understanding of the radiological hazard present, which is often achieved through the combination of in-situ detection and the complementary radiochemistry. Current challenges with in-situ detection arise from the various functions present at nuclear installations. These place constraints on the detector geometry, precision, chemical and environmental...
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Ecem Erin Erin (PhD Student)02/09/2026, 13:52Applications in Security & Environmental ImagingPoster
X-ray Phase Contrast Imaging (XPCI) is a non-destructive imaging technique that enables imaging of weakly absorbing materials by exploiting the phase shifts introduced by the sample. One of the limitations of XPCI methods is the energy range at which they are operated, mostly below 50 keV. To image high-Z and thicker materials for industrial testing or security applications, it is essential to...
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