September 18 – Monday |
AAP 2023 opening speech | John Learned |
Welcome from STFC Boulby Underground Laboratory | Sean Paling |
Boulby Underground Laboratory | Christopher Toth |
Antineutrino detection & technology overview | Steven Dazeley |
Coffee break |
Neutrino applications overview | Rachel Carr |
Reactor flux and spectrum overview | Leendert Hayen |
Lunch break |
Global project overview | Patrick Huber |
Neutrino applications utility overview | Andrew Conant |
Coffee break |
Nu Tools: Exploring Practical Roles for Neutrinos in Nuclear Energy and Security | Michael Foxe |
Nuclear Safeguards: Monitoring of Spent Nuclear Fuel | Dr Yan-Jie Schnellbach |
Sensitivity Tool for Antineutrino Monitoring of Small Modular Reactors | Andrew Conant |
Establishing Antineutrino-based Safeguards Using the State-level Concept | Mr Caiser Bravo |
Scalability of Gd-doped water-Cherenkov reactor-antineutrino IBD detectors for non-proliferation | Viacheslav Li |
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September 19 – Tuesday |
An antineutrino-based detection concept for non-intrusive site-wide reactor monitoring | Steven Dazeley |
SNIFR – Submarine Neutrino Identification For Reconnaissance | Alex Goldsack |
WbLS with pulse-shape discrimination | Tomi Akindele |
Materials development in the 30-tonne tank at BNL | Minfang Yeh |
BUTTON technology testbeds | Jon Coleman |
Coffee break |
Measurement of reactor neutrinos using plastic scintillator cube | Dr Shoichi Hasegawa |
Nuclear reactor monitoring with gadolinium-loaded plastic scintillator modules | Sertac Ozturk |
A 6Li-doped pulse shape sensitive plastic scintillator for ton-scale detector applications | Cristian Roca |
Performance of the ROADSTR PSD Plastic Prototype Detector | Caiser Bravo |
Lunch break |
Novel opaque scintillator technology for antineutrino detection | Thiago Bezerra |
Novel Methodology for Low Energy IBD-like Antineutrinos Detection and Potential | Anatael Cabrera |
Development of a High-Energy Two-Component Gamma Calibration Source | Igor Jovanovic |
Forest of Tubes for a directional IBD detector | John Learned |
EoS – A Pathfinder Experiment for Low Energy Neutrino Physics with the Hybrid Detector THEIA (Abstract & EosYork2023) | Hans Steiger |
PALEOCCENE | |
Coffee break |
Geoneutrinos: messengers from the inaccessible Earth | Dr Virginia Strati |
Reactor flux from reactor data | Bedrich Roskovec |
Reactor spectrum from reactor data | Cristian Roca |
Progress towards understanding the source of the Reactor Antineutrino Anomaly | Alejandro Sonzogni |
Fission yields of isomers in antineutrino calculations | Andrea Mattera |
IAEA meeting report | Paraskevi Dimitriou |
Reactor flux summation method summary (Lorenzo Perisse slides, Lorenzo Perisse, and Lorenzo Perisse recording) | |
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September 20 – Wednesday |
Modelling of the anti-neutrino emissions from an Advanced Gas-cooled Reactor | Dr Andrew Petts |
Anti-Neutrino Flux from the EdF Hartlepool Nuclear Power Plant | Robert Mills |
Estimating Neutrino Signals Using reactors.geoneutrinos.org | Steve Dye |
CONFLUX – The Reactor Antientrino Flux Prediction Software | Xianyi Zhang |
Coffee break |
Antineutrino measurements in SNO+ | Sofia Andringa |
Reactor neutrinos in Super-Kamiokande Gadolinium | Lucas Nascimento Machado |
DoubleChooz Experiment: Latest Results for Antineutrino Applied Detection | Thiago Bezerra |
PROSPECT experiment | Bryce Littlejohn |
DANSS reactor antineutrino spectrometer: results for 2023 | Yury Shitov |
Lunch break |
Status of miniCHANDLER and CHANDLER | H.Keegan Walkup |
Measurement of anti-neutrinos from Nuclear Waste with VIDARR | Carl Metelko |
MAD experiment | Nathaniel Bowden |
The status of Reactor Experiment for Neutrino and Exotics | Byeongsu Yang |
Coffee break |
The COHERENT Experiment at the Spallation Neutron Source | Jason Newby |
Recent results from the CONUS experiment | Christian Buck |
CEvNS at the Dresden-II reactor and beyond | Mark Lewis |
JUNO-TAO | Hans Steiger |
Prospects for geo-neutrinos and supernova neutrinos with JUNO | Pierre-Alexandre Petitjean |
Concluding statements | Nathaniel Bowden |