English

Sensor characterization for the ULTRASAT space telescope

Instrumentation and Methods for Astrophysics 2021-09-02 v1

Abstract

The Ultraviolet Transient Astronomical Satellite is a scientific space mission carrying an astronomical telescope. The mission is led by the Weizmann Institute of Science in Israel and the Israel Space Agency, while the camera in the focal plane is designed and built by Deutsches Elektronen Synchrotron in Germany. Two key science goals of the mission are the detection of counterparts to gravitational wave sources and supernovae. The launch to geostationary orbit is planned for 2024. The telescope with a field-of-view of 200\approx200deg2^2, is optimized to work in the near-ultraviolet band between 220220 and 280280nm. The focal plane array is composed of four 22.422.4-megapixel, backside-illuminated CMOS sensors with a total active area of 90x90mm2^2. Prior to sensor production, smaller test sensors have been tested to support critical design decisions for the final flight sensor. These test sensors share the design of epitaxial layer and anti-reflective coatings (ARC) with the flight sensors. Here, we present a characterization of these test sensors. Dark current and read noise are characterized as a function of the device temperature. A temperature-independent noise level is attributed to on-die infrared emission and the read-out electronics` self-heating. We utilize a high-precision photometric calibration setup to obtain the test sensors` quantum efficiency (QE) relative to PTB/NIST-calibrated transfer standards (220220-11001100nm), the quantum yield for λ<300\lambda < 300nm, the non-linearity of the system, and the conversion gain. The uncertainties are discussed in the context of the newest results on the setup`s performance parameters. From three ARC options, Tstd, T1 and T2, the latter optimizes out-of-band rejection and peaks in the mid of the ULTRASAT operational waveband (max. QE 80%\approx80\% at 245nm245\mathrm{nm}). We recommend ARC option T2 for the final ULTRASAT UV sensor.

Keywords

Cite

@article{arxiv.2108.02521,
  title  = {Sensor characterization for the ULTRASAT space telescope},
  author = {Benjamin Bastian-Querner and Nirmal Kaipachery and Daniel Küsters and Julian Schliwinski and Shay Alfassi and Arooj Asif and Merlin F. Barschke and Sagi Ben-Ami and David Berge and Adi Birman and Rolf Bühler and Nicola De Simone and Amos Fenigstein and Avishay Gal-Yam and Gianluca Giavitto and Juan M. Haces Crespo and Dmitri Ivanov and Omer Katz and Marek Kowalski and Shrinivasrao R. Kulkarni and Ofer Lapid and Tuvia Liran and Ehud Netzer and Eran O. Ofek and Sebastian Philipp and Heike Prokoph and Shirly Regev and Yossi Shvartzvald and Mikhail Vasilev and Dmitry Veinger and Jason J. Watson and Eli Waxman and Steven Worm and Francesco Zappon},
  journal= {arXiv preprint arXiv:2108.02521},
  year   = {2021}
}
R2 v1 2026-06-24T04:51:16.411Z