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Hyper Suprime-Cam: Camera dewar design

Komiyama, Yutaka ; Obuchi, Yoshiyuki ; Nakaya, Hidehiko ; Kamata, Yukiko ; Kawanomoto, Satoshi ; Utsumi, Yousuke ; Miyazaki, Satoshi ; Uraguchi, Fumihiro ; Furusawa, Hisanori ; Morokuma, Tomoki ; Uchida, Tomohisa ; Miyatake, Hironao ; Mineo, Sogo ; Fujimori, Hiroki ; Aihara, Hiroaki ; Karoji, Hiroshi ; Gunn, James E ; Wang, Shiang-Yu

Publications of the Astronomical Society of Japan, 2018-01, Vol.70 (SP1) [Periódico revisado por pares]

Oxford University Press

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  • Título:
    Hyper Suprime-Cam: Camera dewar design
  • Autor: Komiyama, Yutaka ; Obuchi, Yoshiyuki ; Nakaya, Hidehiko ; Kamata, Yukiko ; Kawanomoto, Satoshi ; Utsumi, Yousuke ; Miyazaki, Satoshi ; Uraguchi, Fumihiro ; Furusawa, Hisanori ; Morokuma, Tomoki ; Uchida, Tomohisa ; Miyatake, Hironao ; Mineo, Sogo ; Fujimori, Hiroki ; Aihara, Hiroaki ; Karoji, Hiroshi ; Gunn, James E ; Wang, Shiang-Yu
  • É parte de: Publications of the Astronomical Society of Japan, 2018-01, Vol.70 (SP1)
  • Descrição: Abstract This paper describes the detailed design of the CCD dewar and the camera system which is a part of the wide-field imager Hyper Suprime-Cam (HSC) on the 8.2 m Subaru Telescope. On the 1.°5 diameter focal plane (497 mm in physical size), 116 four-side buttable 2 k × 4 k fully depleted CCDs are tiled with 0.3 mm gaps between adjacent chips, which are cooled down to −100°C by two pulse tube coolers with a capability to exhaust 100 W heat at −100°C. The design of the dewar is basically a natural extension of Suprime-Cam, incorporating some improvements such as (1) a detailed CCD positioning strategy to avoid any collision between CCDs while maximizing the filling factor of the focal plane, (2) a spherical washers mechanism adopted for the interface points to avoid any deformation caused by the tilt of the interface surface to be transferred to the focal plane, (3) the employment of a truncated-cone-shaped window, made of synthetic silica, to save the back focal space, and (4) a passive heat transfer mechanism to exhaust efficiently the heat generated from the CCD readout electronics which are accommodated inside the dewar. Extensive simulations using a finite-element analysis (FEA) method are carried out to verify that the design of the dewar is sufficient to satisfy the assigned errors. We also perform verification tests using the actually assembled CCD dewar to supplement the FEA and demonstrate that the design is adequate to ensure an excellent image quality which is key to the HSC. The details of the camera system, including the control computer system, are described as well as the assembling process of the dewar and the process of installation on the telescope.
  • Editor: Oxford University Press
  • Idioma: Inglês

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