ABSTRACT: A quantum bit computing architecture includes a plurality of single spin memory donor atoms embedded in a semiconductor layer, a plurality of quantum dots arranged with the semiconductor layer and aligned with the donor atoms, wherein a first voltage applied across at least one pair of the aligned quantum dot and donor atom controls a donor-quantum dot … [Read more...] about Scalable Quantum Computer Architecture with Coupled Donor-Quantum Dot Qubits IB-3140
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Quantum Dot Based Cell Motility, Invasion, and Metastasis Assays IB-1755
APPLICATIONS OF TECHNOLOGY: Rapid method for assaying metastatic potential in biopsies Cancer drug development Research on cell motility ADVANTAGES: More photochemically robust than organic dyes Less labor intensive than the Boyden Chamber invasion assay Can be used with live cells – no fixation/processing required Allows for real time variation of external … [Read more...] about Quantum Dot Based Cell Motility, Invasion, and Metastasis Assays IB-1755
High Quantum Efficiency Charge-Coupled Device IB-1204a
APPLICATIONS OF TECHNOLOGY: Low-level light imaging (Astronomical research, Raman Spectroscopy) ADVANTAGES: Back illuminated High near-IR quantum efficiency without fringing Excellent broadband wavelength response Fully depleted for improved spatial resolution Simplified fabrication Superior radiation hardness ABSTRACT: Stephen Holland at Berkeley … [Read more...] about High Quantum Efficiency Charge-Coupled Device IB-1204a
Supramolecular Assembly of Halide Perovskite Blue Emitter for High-Yield, Tunable Optoelectronics 2022-127
APPLICATIONS OF TECHNOLOGY: Electronic displays Optoelectronics Energy efficient lighting BENEFITS: High photoluminescence quantum yield (PLQY) Tunable emission colors Cost effective fabrication High purity Air stability improvement BACKGROUND: Halide perovskites are important materials for optoelectronics applications. Traditional methods of … [Read more...] about Supramolecular Assembly of Halide Perovskite Blue Emitter for High-Yield, Tunable Optoelectronics 2022-127
RSFQ Multiple Output Toggle Flip Flop for Area Efficient Superconducting Digital Computing 2023-037
APPLICATIONS OF TECHNOLOGY: Rapid Single-Flux Quantum (RSFQ) circuits for superconducting digital computing in applications such as: High-speed and low power digital circuits Quantum computing Cryo-sensors HPC accelerators Datacenters BENEFITS: Methodology can design a toggle flip-flop with any number of outputs Reduction in area, power, and … [Read more...] about RSFQ Multiple Output Toggle Flip Flop for Area Efficient Superconducting Digital Computing 2023-037