English

The Einstein Telescope Pathfinder and its Vacuum System

Instrumentation and Methods for Astrophysics 2025-08-25 v1 High Energy Physics - Experiment

Abstract

The Einstein Telescope (ET) will be the next generation gravitational wave observatory in Europe with a sensitivity reaching beyond the CMB into the dark era of the Universe. Each corner of the triangular baseline design is the center of two interferometers with 10 km long arms, one operated at room temperature, the other one with mirrors at cryogenic temperatures of 10-15 K that reduce the noise contribution at frequencies as low as 3 Hz. The ETpathfinder (ET-PF) project at Maastricht University is a R\&D facility for the challenging cryogenic interferometer technology of ET. It is a 20m x 20m interferometer with six towers that will house the seismically decoupled cryogenic Si-mirrors, laser systems, and detectors. The KIT group developed the control system of the ultra-high vacuum system for ET-PF, based on the expertise from the KATRIN neutrino mass experiment. In addition, a test facility is currently being set up at KIT to investigate adsorption and desorption processes of residual gas on the cryogenic mirror surfaces, as well as monitoring techniques and in-situ cleaning procedures. This paper presents the objectives and status of these activities and their contribution towards the next generation gravitational wave observatory.

Keywords

Cite

@article{arxiv.2508.16461,
  title  = {The Einstein Telescope Pathfinder and its Vacuum System},
  author = {Thomas Höhn and Adrian Schwenck and Thomas Thümmler and Joachim Wolf and Ralph Engel and Andreas Haungs and Einstein Telescope Pathfinder and collaboration},
  journal= {arXiv preprint arXiv:2508.16461},
  year   = {2025}
}

Comments

submitted to PoS(ICRC2025)

R2 v1 2026-07-01T05:01:51.626Z