Pith. sign in

Status of the SST Camera for the Cherenkov Telescope Array

1 Pith paper cite this work. Polarity classification is still indexing.

1 Pith paper citing it
abstract

The Cherenkov Telescope Array will be the next generation ground-based gamma ray observatory in the energy range from a few tens of GeV to hundreds of TeV. It will be built on two sites, one for each hemisphere, to cover the entire sky. The observatory will consist of telescopes of three different sizes: large, medium and small, with primary reflectors of 23, 11.5 and 4.3 m in diameter, respectively. The Small-Sized Telescopes (SSTs) will focus on the highest energies; at least 37 (and up to 70) will be deployed at the southern site in Paranal, Chile, covering several square kilometers. They will have a Schwarzschild-Couder dual-mirror design, with a primary reflector of about 4 meters in diameter. This configuration leads to a compact camera, with a diameter of about 50 cm and a weight of less than 100 kg. Its focal plane consists of 2048 Silicon Photomultiplier pixels, each one read independently by a state-of-the-art full waveform readout. The camera design is now in the final stage and the first components are being tested. In this contribution we discuss the design choices, and present test results from latest developments.

fields

astro-ph.IM 1

years

2024 1

verdicts

CONDITIONAL 1

representative citing papers

A Systematic Assessment of Data Volume Reduction for IACTs

astro-ph.IM · 2024-11-22 · conditional · novelty 5.0

A DBSCAN time-based pixel selection retains more low-charge shower pixels than Tailcuts at matched data-reduction factors in CTAO simulations, with mixed noise-rejection performance.

citing papers explorer

Showing 1 of 1 citing paper.

  • A Systematic Assessment of Data Volume Reduction for IACTs astro-ph.IM · 2024-11-22 · conditional · none · ref 25 · internal anchor

    A DBSCAN time-based pixel selection retains more low-charge shower pixels than Tailcuts at matched data-reduction factors in CTAO simulations, with mixed noise-rejection performance.