arXiv · 1804.00162
Spectroscopy of Quantum-Dot Orbitals with In-Plane Magnetic Fields
Abstract
We show that in-plane-magnetic-field assisted spectroscopy allows extraction of the in-plane orientation and full 3D shape of the quantum mechanical orbitals of a single electron GaAs lateral quantum dot with sub-nm precision. The method is based on measuring orbital energies in a magnetic field with various strengths and orientations in the plane of the 2D electron gas. As a result, we deduce the microscopic quantum dot confinement potential landscape, and quantify the degree by which it differs from a harmonic oscillator potential. The spectroscopy is used to validate shape manipulation with gate voltages, agreeing with expectations from the gate layout. Our measurements demonstrate a versatile tool for quantum dots with one dominant axis of strong confinement.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Leon C. Camenzind, Liuqi Yu, Peter Stano, Jeramy Zimmerman, Arthur C. Gossard, Daniel Loss, Dominik M. Zumbühl. 2018-03-31. Spectroscopy of Quantum-Dot Orbitals with In-Plane Magnetic Fields. https://doi.org/10.1103/physrevlett.122.207701
Cite the original work for its findings. Save a collection to share your selection of sources.