Area of research
Atomic and Molecular Physics, and Optics · Artificial Intelligence
Research interest
Research interests include Quantum and electron transport phenomena, Quantum Information and Cryptography, Advanced Thermodynamics and Statistical Mechanics, and Quantum many-body systems.
On-Demand and Tunable Andreev Conversion of Single-Electron Charge Pulses.
Real-Time Detection and Control of Correlated Charge Tunneling in a Quantum Dot.
Heat Pulses in Electron Quantum Optics.
Interacting electrons collide at a beam splitter.
Real-time observation of Cooper pair splitting showing strong non-local correlations.
Electron Waiting Times in a Strongly Interacting Quantum Dot: Interaction Effects and Higher-Order Tunneling Processes.
Controlled emission time statistics of a dynamic single-electron transistor.
Multi-Particle Interference in an Electronic Mach-Zehnder Interferometer.
Dynamic Cooper Pair Splitter.
Shortcuts to Adiabatic Pumping in Classical Stochastic Systems.
Bipartite fluctuations as a probe of many-body entanglement