Faculty profile
Sergei Studenikin
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Research
Latest papers
Magnetic tuning of tunnel coupling between InAsP double quantum dots in InP nanowires.
Scientific reports · 2022
Latest funding
- $170,000
Experimental study of hole spin qubits in gated semiconductor devices for quantum processing and communication applications
NSERC · 2019 · Principal investigator
- $148,035
Electron spin state manipulation in quantum dot circuits with engineered g-factor for quantum memory and communication applications
NSERC · 2014 · Principal investigator
- $76,000
Quantum electronic devices and circuits based on InGaAs/InP ridge structures achieved via CBE nano-template technology
NSERC · 2009 · Principal investigator
1 publications.
Magnetic tuning of tunnel coupling between InAsP double quantum dots in InP nanowires.
Phoenix J, Korkusinski M, Dalacu D, Poole PJ, Zawadzki P, Studenikin S, Williams RL, Sachrajda AS, Gaudreau L
Experimental study of hole spin qubits in gated semiconductor devices for quantum processing and communication applications
Principal investigators: Studenikin, Sergei
Keywords: EDSR; electron spin resonance; Landau-Zener-Stuckelberg interferometry; nuclear spin effects; Rabi oscillations; Ramsey fringes; semiconductor quantum dots; solid state qubits; spin-orbit effects; spin qubits
Electron spin state manipulation in quantum dot circuits with engineered g-factor for quantum memory and communication applications
Principal investigators: Studenikin, Sergei
Quantum electronic devices and circuits based on InGaAs/InP ridge structures achieved via CBE nano-template technology
Principal investigators: Studenikin, Sergei
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Marek Korkusinski and Dan Dalacu: 3 shared papers
- Sergei Studenikin and Marek Korkusinski: 1 shared paper
- Sergei Studenikin and Dan Dalacu: 1 shared paper
- Security and Disruptive Technologies
- Physics
- Quantum Theory Group, Security and Disruptive Technologies
Co-authors at University of Waterloo, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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