Publication

Magnetically mediated hole pairing in fermionic ladders of ultracold atoms
Nature 613, 463–467 (2023)
Conventional superconductivity emerges from pairing of charge carriers—electrons or holes—mediated by phonons1. In many unconventional …
First and Second Sound in a Compressible 3D Bose Fluid
Physical Review Letters 128, 223601 (2022)
Realizing the symmetry-protected Haldane phase in Fermi–Hubbard ladders
Nature 606, 484–488 (2022)
Topology in quantum many-body systems has profoundly changed our understanding of quantum phases of matter. The model that has played …
Bidirectional dynamic scaling in an isolated Bose gas far from equilibrium
Nature Physics 17, 457–461 (2021)
Understanding and classifying non-equilibrium many-body phenomena, analogously to the classification of equilibrium states of matter …
Many-Body Decay of the Gapped Lowest Excitation of a Bose-Einstein Condensate
Physical Review Letters 126, 060402 (2021)
Imaging magnetic polarons in the doped Fermi–Hubbard model
Nature 572, 358–362 (2019)
Polarons—electronic charge carriers ‘dressed’ by a local polarization of the background environment—are among the most fundamental …
Can Three-Body Recombination Purify a Quantum Gas?
Physical Review Letters 123, 020405 (2019)
Direct observation of incommensurate magnetism in Hubbard chains
Nature 565, 56–60 (2019)
The interplay between magnetism and doping is at the origin of exotic strongly correlated electronic phases and can lead to novel forms …
Spin- and density-resolved microscopy of antiferromagnetic correlations in Fermi-Hubbard chains
Science 353, 1257–1260 (2016)
The repulsive Hubbard Hamiltonian is one of the foundational models describing strongly correlated electrons and is believed to capture …
Microscopic Observation of Pauli Blocking in Degenerate Fermionic Lattice Gases
Physical Review Letters 115, 263001 (2015)