Initial Assessment of Second Generation of Large-Area Picosecond Photodetectors with Multi-Channel Systems-on-a-Chip Readout
arXiv:2511.22765 · doi:10.1063/5.0269181
Abstract
We first briefly describe the history and motivation behind Cherenkov and scintillation light detection. We then discuss the instrumentation needed to detect these photons as it applies to both photodetectors and readout electronics. One of the motivations is future large neutrino detectors that could in principle differentiate between Cherenkov and scintillation light if using novel water-based scintillators. In this paper, we present the first measurements utilizing the second generation of Large Area Picosecond Photodetectors (LAPPDs) in conjunction with commercial system-on-a-chip readouts from Nalu Scientific -- specifically, the High Density System on Chip (HDSoC) and Advanced ASoC Rapid Digitizer, Variable Adaptive Readout Chip (AARDVARC) platforms. These state-of-the-art full-waveform digitizers feature sampling rates on the order of 1 and 10 samples per nanosecond, respectively. Using a picosecond laser, we measured the timing jitter between a pair of LAPPD channels, demonstrating the potential of this setup for precise timing applications.
Accepted version (Review of Scientific Instruments)
References in corpus (8)
- Observation of high-energy neutrinos from the Galactic plane
- Characterization of water-based liquid scintillator for Cherenkov and scintillation separation
- Cherenkov and Scintillation Separation in Water-Based Liquid Scintillator using an LAPPD
- Sub-10ps Monolithic and Low-power Photodetector Readout
- Capacitively coupled pickup in MCP-based photodetectors using a conductive metallic anode
- Air-Transfer Production Method for Large-Area Picosecond Photodetectors
- Advances in the Large Area Picosecond Photo-Detector (LAPPD): 8" x 8" MCP-PMT with Capacitively Coupled Readout
- LAPPD operation using ToFPETv2 PETSYS ASIC