Thermal conductivity of silver loaded conductive epoxy from cryogenic to ambient temperature and its application for precision cryogenic noise measurements

Author:

Amils Ricardo I.,Gallego Juan Daniel,Sebastián José LuisORCID,Muñoz Sagrario,Martín Agustín,Leuther Arnulf

Funder

UCM Santander Research Group Program

Joint Research Activities AMSTAR+

AETHER

Publisher

Elsevier BV

Subject

General Physics and Astronomy,General Materials Science

Reference17 articles.

1. Development of cryogenic IF low-noise 4–12GHz amplifiers for ALMA radio astronomy receivers;Lopez-Fernandez,2006

2. Extremely low-noise amplification with cryogenic FETs and HFETs: 1970–2004;Pospieszalski;Microwave Mag, IEEE,2005

3. Thermal agitation of electric charge in conductors;Nyquist;Phys Rev,1928

4. Agilent Technologies, Noise Figure Measurement Accuracy – The Y-Factor Method, Application note 57-2.

5. Bruch D, Schafer F, Seelmann-Eggebert M, Aja B, Kallfass I, Leuther A, et al. A single chip broadband noise source for noise measurements at cryogenic temperatures. In: Microwave symposium digest 2011, IEEE MTT-S international. p. 1–4. http://dx.doi.org/10.1109/MWSYM.2011.5972819.

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