DETTAGLI

Autore/i: S.J. Rezvani, D. Di Gioacchino1, S. Tofani2, A. D’Arco3, S. Lupi3 C. Gatti1, M. Cestelli Guidi1, A. Marcelli1
Titolo: The cryogenic magneto-optical device for terahertz radiation detection
Numero: INFN-20-02/LNF
Data: 16-04-2020
PACS:
Pubblicato su:
PDF file: INFN-20-02-LNF.pdf
URL:
Abstract: We present here a small-scale liquid helium (LH) immersion cryostat with an innovative
optical setup suitable to work in long wavelength radiation ranges and under applied
magnetic field. The cryostat is a multi stage device with several shieldings in addition
to several optical stages. The system has been designed with an external liquid nitrogen
boiler to reduce the liquid bubbling. The optical and mechanical properties of the optical
elements were calculated and optimized for the designed configuration while the optical
layout has been simulated and optimized among different configurations based on the
geometry of the device. The final design has been optimized for low noise radiation measurements
of proximity junction arrays under applied magnetic field in the wavelength
range λ=250-2500 µm.

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