Optical Cryostat Realizations at Absolut System

被引:0
|
作者
Trollier, T. [1 ]
Ravex, A. [1 ]
Tanchon, J. [1 ]
机构
[1] Absolut Syst, F-38240 Meylan, France
来源
关键词
Cryostat; cryocooler; Pulse Tube; optical windows;
D O I
10.1063/1.4860688
中图分类号
O414.1 [热力学];
学科分类号
摘要
This paper describes two kinds of optical cryostats designed and manufactured at Absolut System. The first one makes use of pressurized LN2 for temperature control of a sample holder in the 80 K 470 K temperature range. An optical window is implemented above the sample holder to allow for rugosity and 3D distortion of heterogeneous semicon sample assemblies on a wafer. The second one makes use of CRYOMECH remote motor type pulse tube cryocoolers for temperature control of the sample holder in the 3 K 300 K temperature range. In this type of cryostats, particular attention has been paid to reduce the vibrations exported by the cooler. These 4 K ultra low vibration cryostats are used for characterization of samples via optical windows. Both designs will be presented and the performance reported.
引用
收藏
页码:99 / 104
页数:6
相关论文
共 50 条
  • [21] FLOWTHROUGH OPTICAL CRYOSTAT FOR A SUPERCONDUCTING SOLENOID
    SILAEV, VI
    STETSENKO, YE
    BELYAEVA, AI
    STELMAKHOV, YN
    EGIAZARYAN, GS
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 1979, 22 (05) : 1440 - 1441
  • [22] A Combined Cryostat for Neutron and Optical Investigations
    Efimov, V. B.
    Lokhov, A. V.
    Mezhov-Deglin, L. P.
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 2018, 61 (03) : 459 - 466
  • [23] CRYOSTAT FOR MAGNETO-OPTICAL STUDIES
    ZASAVITSKII, II
    METSONASHVILI, BN
    SHOTOV, AP
    CRYOGENICS, 1971, 11 (02) : 136 - +
  • [24] The safety system of the herschel cryostat
    Langfermann, M
    Jahn, G
    Holm, R
    Ruehe, W
    Jewell, C
    ADVANCES IN CRYOGENIC ENGINEERING, VOLS. 49A AND B, 2004, 710 : 513 - 520
  • [25] GLASS HELIUM CRYOSTAT FOR OPTICAL AND MAGNETO-OPTICAL STUDIES
    DZHIOEV, RI
    SHIRYAPOV, IP
    CRYOGENICS, 1978, 18 (05) : 304 - 304
  • [26] Thermal and optical characterization for POLARBEAR-2 optical cryostat
    Inoue, Y.
    Stebor, N.
    Ade, P. A. R.
    Akiba, Y.
    Arnold, K.
    Anthony, A. E.
    Atlas, M.
    Barron, D.
    Bender, A.
    Boettger, D.
    Borrill, J.
    Chapman, S.
    Chinone, Y.
    Cukierman, A.
    Dobbs, M.
    Elleflot, T.
    Errard, J.
    Fabbian, G.
    Feng, C.
    Gilbert, A.
    Halverson, N. W.
    Hasegawa, M.
    Hattori, K.
    Hazumi, M.
    Holzapfel, W. L.
    Hori, Y.
    Jaehnig, G. C.
    Jaffe, A. H.
    Katayama, N.
    Keating, B.
    Kermish, Z.
    Keskitalo, R.
    Kisner, T.
    Le Jeune, M.
    Lee, A. T.
    Leitc, E. M.
    Linder, E.
    Matsuda, F.
    Matsumura, T.
    Meng, X.
    Morii, H.
    Myers, M. J.
    Navaroli, M.
    Nishino, H.
    Okamura, T.
    Paar, H.
    Peloton, J.
    Poletti, D.
    Rebeiz, G.
    Reichard, C. L.
    MILLIMETER, SUBMILLIMETER, AND FAR-INFRARED DETECTORS AND INSTRUMENTATION FOR ASTRONOMY VII, 2014, 9153
  • [27] GLASS HELIUM CRYOSTAT FOR OPTICAL AND MAGNETO-OPTICAL INVESTIGATIONS
    DZHIOEV, RI
    SHIRYAPOV, IP
    INSTRUMENTS AND EXPERIMENTAL TECHNIQUES, 1977, 20 (03) : 911 - 912
  • [28] Optical flow cryostat with rotatable sample stage
    Graham, JT
    Ihas, GG
    JOURNAL OF LOW TEMPERATURE PHYSICS, 2005, 138 (3-4) : 923 - 928
  • [29] VACUUMLESS CRYOSTAT FOR OPTICAL INVESTIGATIONS OF SEMICONDUCTORS.
    Lukin, A.N.
    Yukish, V.A.
    Kavetskii, V.S.
    Instruments and Experimental Techniques (English Translation of Pribory I Tekhnika Eksperimenta), 1979, 22 (3 pt 2): : 863 - 865
  • [30] AN INVERTED COLD-FINGER OPTICAL CRYOSTAT
    WELLER, JF
    GANDY, HW
    REPORT OF NRL PROGRESS, 1967, (JAN): : 48 - &