Thermal model for the bolometric response of high-Tc superconducting films to chopped optical radiation

被引:0
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作者
Genchev, Z.D. [1 ]
Chakalov, R.A. [1 ]
Chern, J.D. [1 ]
Dew-Hughes, D. [1 ]
机构
[1] Inst of Electronics of the Bulgarian, Acad of Sciences, Sofia, Bulgaria
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Electric resistance - Heat conduction - Helium neon lasers - High temperature superconductors - Laser diagnostics - Mathematical models - Superconducting films;
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摘要
Thermal detectors which convert the incident radiation to heat are frequently used to give a periodic response to the external signal modulated at a fixed low-frequency chopping frequency. Many workers have ascertained the bolometric response of high-quality epitaxial superconducting films on different substrates to chopped laser radiation. Based on these observations we made an a priori assumption that the voltage response of thin film is entirely due to a thermal mechanism, i.e. in the proposed one-dimensional heat conduction analysis any possible non-equilibrium processes are neglected. A new analytical formula is derived for the mean temperature increase in the superconducting film. This formula generalizes the previously well known analytical approximations. Further we explore a specific numerical example based on experimental data for the optical response of a thin (1.5 μm) high-Tc Bi-based film on an SrTiO3 substrate irradiated by chopped He-Ne laser radiation (λ = 633 nm). On the basis of the theory and the chopping frequency dependence of the peak voltage response an implementation of a new diagnostic method for evaluation of the thermal Kapitza conductance at the superconducting film-insulator interface is demonstrated.
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页码:523 / 528
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