معرفی
Dr. Martin Kroner serves as a Lecturer within the Department of Physics at ETH Zurich, Switzerland, based at the Institute for Quantum Electronics (Institut für Quantenelektronik) in the HPT G 7 building at Auguste-Piccard-Hof 1, 8093 Zürich. His contact details include work phone +41 44 633 27 50, secretariat phone +41 44 633 45 77, and email mkroner@phys.ethz.ch, with ORCID 0000-0001-8154-5990.
His research centers on Condensed Matter Physics with emphases in Quantum Optics, Nanotechnology, and 2D Materials. Kroner investigates quantum phenomena in low-dimensional systems, particularly exciton dynamics, moiré physics, and quantum confinement in van der Waals heterostructures. His work bridges fundamental quantum mechanics with applications in quantum information and photonics, focusing on electrical control of quantum states and novel spectroscopic techniques for probing correlated electron systems.
Analysis of his recent publications (2023-2025) reveals dominant trends in moiré excitonics, Wigner crystal formation, and electrical manipulation of quantum emitters in 2D semiconductors. He has made significant contributions to the roadmap for 2D material photonics and techniques for ultrastrong light-matter coupling, with applications spanning quantum computing and advanced optoelectronics.
No scientific awards were documented in the provided source material.
Dr. Kroner actively supervises student projects, as evidenced by his 2024 publication on cost-efficient spectrometers for educational labs, and collaborates within ETH Zurich's Institute for Quantum Electronics on experimental quantum optics and nanofabrication. His research integrates optical spectroscopy, nanoscale engineering, and quantum transport measurements to explore emergent phenomena in engineered quantum materials.
He operates within ETH Zurich's Institute for Quantum Electronics, a leading facility for quantum photonics research, where his team develops novel experimental platforms for studying quantum coherence and many-body physics in atomically thin materials.

