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Borenstain, Shmuel I.

Publications and source records attributed to Borenstain, Shmuel I..

Infrared Multiple-Quantum-Well Phototransistor

Proposed npn AlxGa1-xAs phototransistor incorporates multiple-quantum-well (MQW) infrared photodetector. Has n-doped contacts and is embedded between p-doped base region and n-doped collector region of transistor. Photocurrent amplified, and dark current suppressed.

Borenstain, Shmuel I.

Phototransistors For Long-Wavelength Infrared

Phototransistors of proposed new type used to detect photons having wavelengths of 8 to 150 micrometers. Detection based on impurity-to-continuum transitions. Integrated-circuit imaging arrays of such phototransistors useful in infrared remote sensing. Device of this type silicon, germanium, or silicon/germanium phototransistor in which junction between collector and base lightly doped with impurities.

Borenstain, Shmuel I.

Multiple-Quantum-Well Intersubband Infrared Detector

Proposed multiple-quantum-well intersubband semiconductor device detects photons over broader range of wavelengths. Device is stack of substacks, each of which contains quantum-well layers sensitive to different narrow band of wavelengths. Bandwidth and detectivity increased.

Borenstain, Shmuel I.

Evaluation of the feasibility of a far-infrared laser based on intersubband transitions in GaAs quantum wells

The threshold current and quantum efficiency are calculated for an FIR injection laser based on intersubband transitions in GaAs single quantum wells. By considering the balance of gain against the free carrier and transverse optical phonon absorption, and the intersubband transition time, the wavelength dependence of the threshold current is calculated. For the wavelength range 50-120 microns, the required threshold currents are the lowest and have reasonable values of 1-10 kA/sq cm. The threshold quantum efficiency in that range is expected to be about 0.0001.

Borenstain, Shmuel I.