This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a University of Waterloo directory, so their courses and email address may be missing. Find their university profile.
Research
Latest papers
Suspended graphene devices with local gate control on an insulating substrate.
Nanotechnology · 2015 · senior author
Observation of Floquet States in a Strongly Driven Artificial Atom.
Physical review letters · 2015 · senior author
Quantum physics: The path most travelled.
Nature · 2014 · first author
Latest funding
- $64,155
Critical repair of a dilution refrigerator used for experiments with superconducting devices
NSERC · 2024 · Principal investigator
- $591,784
Development of a scalable superconducting quantum computing platform based on fluxonium qubits
NSERC · 2023 · Principal investigator
- $296,665
Superconducting levitation in the quantum regime - a platform for quantum science and technology
NSERC · 2023 · Principal investigator
4 publications.
Suspended graphene devices with local gate control on an insulating substrate.
Ong FR, Cui Z, Yurtalan MA, Vojvodin C, Papaj M, Orgiazzi JL, Deng C, Bal M, Lupascu A
Observation of Floquet States in a Strongly Driven Artificial Atom.
Deng C, Orgiazzi JL, Shen F, Ashhab S, Lupascu A
Quantum physics: The path most travelled.
Lupascu A
Insertable system for fast turnaround time microwave experiments in a dilution refrigerator.
Ong FR, Orgiazzi JL, de Waard A, Frossati G, Lupascu A
Critical repair of a dilution refrigerator used for experiments with superconducting devices
Principal investigators: Lupascu, Adrian
Keywords: decoherence; dilution regrigerators; light-matter ultra-strong coupling; low-temperature physics; open quantum systems; quantum computing; quantum control; qudits; relativistic quantum information; superconducting quantum devices
Development of a scalable superconducting quantum computing platform based on fluxonium qubits
Principal investigators: Lupascu, Adrian A
Keywords: decoherence; fluxonium qubits; low temperature physics; nanofabrication; quantum computing; quantum control; quantum gates; quantum information; superconducting quantum bits; superconducting quantum devices
Superconducting levitation in the quantum regime - a platform for quantum science and technology
Principal investigators: Lupascu, Adrian A
Keywords: diamagnetic levitation; force detection; gravimetry; levitated particles; low temperature physics; quantum measurements; quantum science and technology; quantum sensing; superconducting quantum bits; superconducting resonator
Quantum information processing with multilevel systems
Principal investigators: Lupascu, Adrian A
Ultrafast arbitrary waveform generator for experiments in quantum computing, quantum simulation, and relativistic quantum information with superconducting circuits
Principal investigators: Lupascu, Adrian
Exploring new frontiers in quantum information and open quantum systems using superconducting flux quantum bits
Principal investigators: Lupascu, Adrian
Keywords: superconducting quantum devices; quantum information; quantum computing; ultra-strong coupling; spin-boson model; relativistic quantum information; low-temperature physics; superconductivity; condensed matter physics; quantum optics
Equipment for fast turnaround experiments with quantum devices in a dilution refrigerator
Principal investigators: Lupascu, Adrian
Superconducting nanodevices: fundamental investigations and application to quantum information and sensitive detection
Principal investigators: Lupascu, Adrian
Fast pulse-shaping equipment for superconducting quantum computing
Principal investigators: Lupascu, Adrian
Scalable quantum computing with superconducting circuits
Principal investigators: Lupascu, Adrian
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
A short, specific email works best. This draft uses one of their recent papers; replace the parts in brackets with your own details before sending.