The millimeter wave super-schottky diode detector
A. H. Silver, R.J.S. Pedersen, M. McColl, R. L. Dickman, W.J. Wilson
Abstract
A. H. Silver, R.J.S. Pedersen, M. McColl, R. L. Dickman, W.J. Wilson
Abstract
The superconductor-Schottky (super-Schottky) diode has been extended to millimeter wavelengths by manipulation of the semiconductor interface, and measurements are reported at 31 and 92 GHz. Diodes were formed by pulse electroplating Pb on 2 × 1019cm-3p-GaAs which was etched wth HCl. A thin Au overplate protects the Pb surface from degradation and extends the lifetime of the diode. The diodes were contacted with cat whiskers and mounted across 1/4 height waveguide. The measured diode noise performance is nearly ideal at both 31 and 92 GHz. At 31 GHz, the reported performance is Lc= 8.6 dB, Tmixer= 10K, NEP = 4.8 × 10-16W/Hz1/2; at 92 GHz, Lc= 18 dB, 76Kmixer< 190K. Therefore this device is a quantum-noise-limited detector at 31 GHz (measured sensitivity of 7 photons) but suffers from excess parasitic losses at 92 GHz. Reducing the loss at 92 GHz will require further engineering of either the semiconductor surface or the contact geometry.
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The superconductor-Schottky (super-Schottky) diode has been extended to millimeter wavelengths by manipulation of the semiconductor interface, and measurements are reported at 31 and 92 GHz. Diodes were formed by pulse electroplating Pb on 2 × 1019cm-3p-GaAs which was etched wth HCl. A thin Au overplate protects the Pb surface from degradation and extends the lifetime of the diode. The diodes were contacted with cat whiskers and mounted across 1/4 height waveguide. The measured diode noise performance is nearly ideal at both 31 and 92 GHz. At 31 GHz, the reported performance is Lc= 8.6 dB, Tmixer= 10K, NEP = 4.8 × 10-16W/Hz1/2; at 92 GHz, Lc= 18 dB, 76Kmixer< 190K. Therefore this device is a quantum-noise-limited detector at 31 GHz (measured sensitivity of 7 photons) but suffers from excess parasitic losses at 92 GHz. Reducing the loss at 92 GHz will require further engineering of either the semiconductor surface or the contact geometry.
Key concepts: Schottky diode, Diode, Physics, Optoelectronics, Analytical Chemistry (journal), Materials science, Chemistry, Chromatography