Quick Links: 138GHz IQ-Power DAC with on-die antennas transmitting 32QAM over 10cm |
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Elevated Temperature Monolithic Quantum Processors in Silicon |
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Forever scaling? Is Planck's length the ultimate limit of scaling? |
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Millimetre-Wave/Terahertz Sensing and Imaging |
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Current Graduate Students (past students: 2005 2019 2022) |
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1 |
Shai Bonen, PhD Candidate: FDSOI CMOS Quantum Processors |
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2 |
Suyash Pati Tripathi, PhD Candidate: Behavioural Modelling of Semiconductor Qubits and Quantum Processors |
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3 |
Rafid Adnan Khan, PhD Candidate: 128 GBaud Decision Feedback Equalizer in 22nm FDSOI |
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4 |
Julie McIntosh, PhD Candidate: Design of Hole-Spin Coupled Qubit Arrays |
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Khaled Matloub, MASc Candidate: 100-GHz Bandwidth Analog MUX in 22nm FDSOI |
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6 |
Srirup Bagchi, MASc Candidate: Linear Analog-to-Digital Converter Frontends with over 100-GHz Bandwidth |
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7 |
Aseer Chowdhury, MASc Candidate: 100-GHz Bandwidth Linear Large Swing Optical Modulator Drivers |
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8 |
Truman Jian, MASc Candidate: 350 GBaud Analog Multiplexer |
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Sarah Banham, MASc Candidate: 400 GBaud Linear Front-End Circuits |
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10 |
Maaz Khurram, MASc Candidate: 400 GBaud Linear Front-End Circuits |
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Undergraduate projects/theses |
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1 |
Vivek Dhande: QTCAD Simulation of FDSOI Spin Qubits |
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Andrei Olar: QuantumATK Simulation of 3nm FinFET Quantum Dots |
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Janelle Frias: mm-Wave spin-qubit test setup |
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Nick Nabavi-Hoshmand Naini: 200+ Gb/s SiPh Transmitters |
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Shiyu Shen, Minghao Zhang and Zhaolei Zhang: 200+ Gb/s SiPh Receivers |
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Jingyang Hu, Qingyang Liu and Sam Chowdhury: 350GBaud Analog MUX in InP/GaAsSb HBT Technology |
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