Mohamed I. Ibrahim
PhD alum '21 · Assistant Professor, Cornell University
After the group
Assistant Professor, Cornell University
PhD Dissertation
Miniaturized Chip-Scale Quantum and Terahertz Systems Through Tight Integration of Electronics, Electromagnetics, and Qubits MIT DSpace ↗
Awards
- 2021 MIT MTL Doctoral Dissertation Award
- IEEE SSCS Predoctoral Achievement Award
Publications in the group 19
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A Bidirectional Wireless THz Datalink Designed to Maximize the Information-per-Heat Transfer to A Cryogenic Device
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Heterogeneous integration of spin–photon interfaces with a CMOS platform
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Zero-Change CMOS Nanophotonics: Converting Foundry Semiconductor Chips to Plasmonic Electro-optic Modulators
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THz Cryo-CMOS Backscatter Transceiver: A Contactless 4 Kelvin-300 Kelvin Data Interface
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CMOS Integrated Circuits for the Quantum Information Sciences
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Physical-Layer Security for THz Communications via Orbital Angular Momentum Waves
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A 0.31-THz Orbital-Angular-Momentum (OAM) Wave Transceiver in CMOS With Bits-to-OAM Mode Mapping
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Emerging Terahertz Integrated Systems in Silicon
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High-Scalability CMOS Quantum Magnetometer with Spin-State Excitation and Detection of Diamond Color Centers
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CMOS THz-ID: A 1.6-mm² Package-Less Identification Tag Using Asymmetric Cryptography and 260-GHz Far-Field Backscatter Communication
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A 0.31THz CMOS Uniform Circular Antenna Array Enabling Generation/Detection of Waves with Orbital Angular Momentum
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THzID: A 1.6mm² Package-Less Cryptographic Identification Tag with Backscattering and Beam-Steering at 260GHz
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Beyond Crypto: Physical-Layer Security for Internet of Things Devices
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A CMOS-Integrated Quantum Sensor Based on Nitrogen-Vacancy Centres
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Quantum Sensing in CMOS under Ambient Conditions: On-Chip Detection of Electronic Spin States in Diamond
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CMOS-Integrated Diamond Nitrogen-Vacancy Quantum Sensor
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A Scalable Quantum Magnetometer in 65nm CMOS with Vector-Field Detection Capability
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On-Chip Detection of Spin States in Color Centers for Metrology and Information Processing
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Room-Temperature Quantum Sensing in CMOS: On-Chip Detection of Electronic Spin States in Diamond Color Centers for Magnetometry