The DELPHI very forward tracker for LEP200
✍ Scribed by A Andreazza; C Aubret; M Baubillier; K.H Becks; C Bosio; O Botner; C Boutonnet; J.M Brunet; O Bystrom; M Caccia; P Chochula; V Cindro; J.C Clemens; M Cohen-Solal; P Delpierre; J Drees; Y Dufour; T Ekelof; P Gerlach; K.W Glitza; L Guglielmi; A Hallgren; E Hanuska; J Heuser; J.J Jaeger; R Janik; R Jeraj; S Kersten; P Kind; M Krammer; L Kurchaninov; G Leder; F Ledroit; R Leitner; D Liko; L.E Lindqvist; M Lokajicek; L Lopez; S Maček; A Maier; E Margan; C Mariotti; J Masik; C Meroni; K Mönig; T Mouthuy; H Pernegger; M Pernicka; M Pindo; D Rakoczy; M Raymond; N Redaelli; M Regler; J Ridky; L Roos; F Rossel; V Rykalin; D Sauvage; P Sicho; I Stavitski; G Tristram; C Troncon; B Überschär; G Vegni; P Vojtyla; V Vrba; J Waisbard; D Žontar
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 333 KB
- Volume
- 367
- Category
- Article
- ISSN
- 0168-9002
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
The cryogenics for the LEP200 project covers the liquid helium bath cooling requirements of about 200 superconducting RF acceleration cavities tobe installed in the ring tunnel of CERN's electron-positron collider LEP. It includes two cryoplants of 6 kW refrigeration capacity, four of 12 kW, about 2