Published January 1991 | Version v1
Report

Thermal response of large-area high-temperature superconducting YBaCuO infrared bolometers

Creators

Description

Thermal analysis of large area high temperature superconducting infrared detector operating in the equilibrium mode (bolometer) was performed. An expression for the temperature coefficient beta = 1/R(dR/dT) in terms of the thermal conductance and the thermal time constant of the detector were derived. A superconducting transition edge bolometer is a thermistor consisting of a thin film superconducting YBaCuO evaporated into a suitable thermally isolated substrate. The operating temperature of the bolometer is maintained close to the midpoint of the superconducting transition region where the resistance R has a maximum dynamic range. A detector with a strip configuration was analyzed and an expression for the temperature rise (delta T) above the ambient due to a uniform illumination with a source of power density was calculated. An expression for the thermal responsibility depends upon the spatial modulation frequency and the angular frequency of the incoming radiation. The problem of the thermal cross talk between different detector elements was addressed. In the case of monolithic HTS detector array with a row of square elements of dimensions 2a and CCD or CID readout electronics the thermal spread function was derived for different spacing between elements

Additional details

Publishing Information

Imprint Title
AMSAHTS 1990: Advances in Materials Science and Applications of High Temperature Superconductors
Imprint Pagination
488 p.
Journal Page Range
p. 69-82.
Report number
N--92-21605

Conference

Title
advances in material science and applications of high temperature superconductors.
Acronym
AMSAHT'S 90
Dates
2-6 Apr 1990.
Place
Greenbelt, MD (United States).

Optional Information