1/F Noise And Dark Current Correlation In Midwave Inas/Gasb Type-Ii Superlattice Ir Detectors

PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE(2021)

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摘要
Herein, results from noise and dark current density studies on InAs/GaSb type-II superlattice IR detectors are presented. The activation energy of the dark current density is used to identify the dominating dark current mechanisms (generation-recombination (GR), tunneling, or diffusion dark current) as a function of temperature and bias. The bias evolution of the power spectral density (PSD) is measured in dark conditions for several temperatures. At the operating bias of the detectors, the arrays show a white noise-dominated spectrum up to 100 K with a minor 1/fcontribution (corner frequency around 10 Hz), while for higher temperatures the spectra are 1/fdominated. The 1/fnoise component is compared to the dominating dark current mechanism in the same temperature and bias regimes. A strong correlation between the 1/fnoise component and the dominating dark current (I) is found, with the PSD proportional toIfor tunneling currents andI(2)for GR and diffusion currents. Very low noise coefficients of alpha(GR) = 4.8 x 10(-9) Hz(-1),alpha(diff) = 1.9 x 10(-10) Hz(-1), and alpha(tun) = 2.1 x 10(-16) A Hz(-1)are observed for these detectors.
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关键词
activation energy, dark current, IR detectors, type-II superlattice, 1, fnoise
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