Search Results - "Marderfeld, I."
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XBn and XBp Detectors Based on Type II Superlattices
Published in Journal of electronic materials (01-09-2022)“…XB n and XB p barrier detectors offer diffusion-limited dark current and high operating temperatures. Type II superlattices (T2SLs) based on either InAs/GaSb…”
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2
Type II Superlattice Infrared Detector Technology at SCD
Published in Journal of electronic materials (01-10-2018)“…Semi-Conductor Devices’ long-wave infrared 640 × 512/15- μ m pitch type II superlattice detector is based on an XB p design with an InAs/GaSb absorbing layer…”
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3
Polarization sensitive spectroscopy of charged quantum dots
Published in Physical review. B, Condensed matter and materials physics (04-12-2007)Get full text
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4
Polarization memory in single quantum dots
Published in Solid state communications (01-09-2009)“…We measured the polarization memory of excitonic and biexcitonic optical transitions from single quantum dots at either positive, negative or neutral charge…”
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5
Minority carrier lifetime and diffusion length in type II superlattice barrier devices
Published in Infrared physics & technology (01-01-2019)“…•Model for the size dependence of dark- and photo-current in mesa test devices.•k⋅p model of intrinsic carrier concentration in type II superlattice…”
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6
Performance Limits of III–V Barrier Detectors
Published in Journal of electronic materials (01-11-2020)“…Minority-carrier lifetimes and diffusion lengths have been deduced from a comparison of band structure simulations and experimental measurements on mid-wave…”
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7
Polarization memory in single quantum dots: Fundamental Phenomena and Applications of Quantum Dots
Published in Solid state communications (2009)Get full text
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8
Polarization memory in single Quantum Dots
Published 25-02-2009“…We measured the polarization memory of excitonic and biexcitonic optical transitions from single quantum dots at either positive, negative or neutral charge…”
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9
Polarization sensitive spectroscopy of charged Quantum Dots
Published 05-10-2007“…We present an experimental and theoretical study of the polarized photoluminescence spectrum of single semiconductor quantum dots in various charge states. We…”
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