Conveners
Plenary
- Noah Kurinsky (SLAC)
Plenary
- There are no conveners in this block
Plenary: Award Talks
- There are no conveners in this block
Plenary: Early Career Talks
- There are no conveners in this block
Plenary: Closeout
- There are no conveners in this block
Plenary: Memorial Symposium for Gary Varner
- Oskar Hartbrich (Oak Ridge National Lab)
- Peter Orel (Stanford University)
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Noah Kurinsky (SLAC)11/7/23, 8:30 AM
Including a welcome to SLAC from new director John Serrao
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Petra Merkel (Fermilab)11/7/23, 8:40 AM
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Helmut Marsiske (DOE HEP)11/7/23, 8:52 AM
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Thomas Bergauer (HEPHY-ÖAW (Austria) and CERN)11/7/23, 9:00 AM
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Marina Artuso (syracuse university)11/7/23, 9:40 AM
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Kent Irwin (SLAC)11/7/23, 11:00 AM
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Jonathan Asaadi (University of Texas Arlington)11/7/23, 11:40 AM
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Petra Merkel (Fermilab)11/8/23, 8:30 AMOral
https://cpad-dpf.org/?page_id=750
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David Saltzberg (University of California, Los Angeles (UCLA)), Peter Gorham (Dept. of Physics, University of Hawaii at Manoa)11/8/23, 8:35 AMOral
"For their experimental proof and subsequent characterization of radio emission from high-energy particle cascades, the Askaryan Effect, which has been used in searches for the highest energy astrophysical (PeV and EeV) neutrinos. They have utilized the lunar regolith, Antarctic ice sheet, salt and other dielectrics as detector materials. In addition, they have studied the radio signatures of...
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Dan Dwyer (Lawrence Berkeley National Lab)11/8/23, 9:10 AMOral
“For his work on 3D pixelated readout technology for liquid argon time projection chambers (LArPix). This low power, low noise custom ASIC with dynamic i/O, capable of running in liquid argon, has helped open the field to advanced systems on chips. Such technologies underpin the modular DUNE ND-LAr near detector which will need to make precise measurements in a high flux environment with event...
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Noah Kurinsky (SLAC)11/8/23, 9:45 AM
https://cpad-dpf.org/?page_id=750#temporaryId12
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Karen Navarro (UTA)11/8/23, 9:50 AM
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Yu-Han Tseng (Yale University)11/8/23, 10:05 AMOral
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Majd Ghrear (University of Hawaii)11/8/23, 10:20 AMOral
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Caleb Fink (Los Alamos National Laboratory)11/9/23, 8:30 AMEarly CareerOral
With the advancement in low-threshold detector technology over the last decade, the HEP community has increasingly been able to probe for new physics at low energies. Specifically, looking for beyond the standard model physics via distortions of the low energy CE$\nu$NS spectrum, searching for low mass dark matter, and single counting of THz photons. However, measuring particle interactions...
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Cristián Peña (Fermilab)11/9/23, 8:50 AMEarly CareerOral
We present the latest developments of the Fermilab and Illinois Express Quantum Networks experiments. These operating quantum networks, with deployed infrastructure spanning the Chicagoland metropolitan area and connecting Fermilab and Argonne National Labs, spanning more than 50 km, have achieve record quantum teleportation and entanglement swapping fidelities using time-bin photonics qubits...
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Guillermo Fernandez Moroni (Fermilab), Dr Fabricio Alcade (Centro Atómico Bariloche)11/9/23, 9:10 AMEarly CareerOral
The Skipper CCD-in-CMOS image sensor integrates the non-destructive readout capability of skipper Charge Coupled Devices (CCDs) with a high conversion gain pinned photodiode on a CMOS imaging process, while taking advantage of in-pixel signal processing.
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We will present the first results of the testing of the first prototype ASIC, fabricated in a commercial 180nm CMOS processes, which... -
Vetri Velan (Lawrence Berkeley National Laboratory)11/9/23, 9:30 AMEarly CareerOral
The Helium Roton Apparatus for Light Dark Matter (HeRALD) experiment will use superfluid 4He to probe unexplored dark matter parameter space. Superfluid helium has several advantages: good kinematic matching to light dark matter candidates, ballistic quasiparticle propagation, scalability, and multiple signal channels for electronic vs. nuclear recoil discrimination. I will discuss recent...
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Sungjoon Kim (University of Illinois at Chicago)11/9/23, 9:50 AMEarly CareerOral
Thin film technology such as chemical vapor deposition and atomic layer deposition can deposit a variety of materials with high precision over large areas. Thin film detectors incorporate semiconducting materials for the sensing layer and also potentially electronic elements into a monolithic design. Fabrication of thin film detectors is possible on large, flexible substrates which can scale...
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Miguel Arratia (University of California, Riverside)11/9/23, 10:10 AM
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Jonathan Asaadi (University of Texas Arlington), Petra Merkel (Fermilab)11/10/23, 11:30 AM