Bulletin of the American Physical Society
APS March Meeting 2019
Volume 64, Number 2
Monday–Friday, March 4–8, 2019; Boston, Massachusetts
Session P29: Semiconducting QC Architectures and Quantum Photonics
2:30 PM–5:30 PM,
Wednesday, March 6, 2019
BCEC
Room: 162A
Sponsoring
Unit:
DQI
Chair: Samuel Carter, United States Naval Research Laboratory
Abstract: P29.00002 : Simulating Nagaoka Ferromagnetism in a 2×2 Quantum Dot Array
2:42 PM–2:54 PM
Presenter:
Uditendu Mukhopadhyay
(QuTech and Kavli Institute of Nanoscience, Delft University of Technology)
Authors:
Uditendu Mukhopadhyay
(QuTech and Kavli Institute of Nanoscience, Delft University of Technology)
Juan Pablo Dehollain
(QuTech and Kavli Institute of Nanoscience, Delft University of Technology)
Vincent P. Michal
(QuTech and Kavli Institute of Nanoscience, Delft University of Technology)
Christian Reichl
(Solid State Physics Laboratory, ETH Zurich)
Werner Wegscheider
(Solid State Physics Laboratory, ETH Zurich)
Bernhard Wunsch
(Department of Physics, Harvard University)
Mark Rudner
(Niels Bohr International Academy, University of Copenhagen)
Eugene Demler
(Department of Physics, Harvard University)
Lieven Vandersypen
(QuTech and Kavli Institute of Nanoscience, Delft University of Technology)
Last year we established a 2x2 gate-defined quantum dot array as a promising solid-state analogue quantum simulator2. Here we present results on simulation of Nagaoka Ferromagnetism in this system. We experimentally observe a ferromagnetic ground state in an almost-half-filled lattice, as predicted3. We use the high-levels of control in our system to manipulate the Hamiltonian parameters and perform measurements that test the validity of our observations. For example, breaking the periodic boundary condition gets rid of the ferromagnetic ground state altogether. To our knowledge, this is the first experimental verification of Nagaoka’s prediction as well as the first simulation of magnetism using quantum dot arrays.
[1] T. Hensgens, et. al., Nature 548, 70 (2017)
[2] U. Mukhopadhyay, et. al., Appl. Phys. Lett. 112, 183505 (2018)
[3] Y. Nagaoka, Phys. Rev. 147, 392-405 (1966)
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