1981IEEE Transactions on MagneticsRequires access

The millimeter wave super-schottky diode detector

A. H. Silver, R.J.S. Pedersen, M. McColl, R. L. Dickman, W.J. Wilson

Open publisher page 6 citations

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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What this paper is about

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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Available 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.

Key concepts: Schottky diode, Diode, Physics, Optoelectronics, Analytical Chemistry (journal), Materials science, Chemistry, Chromatography

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