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Spectroscopic probes of quantum gases
The foundation of atomic physics is the arsenal of spectroscopic tools to probe individual
atoms and molecules with astounding precision. With the advent of ultracold quantum …
atoms and molecules with astounding precision. With the advent of ultracold quantum …
Observation and quantification of the pseudogap in unitary Fermi gases
The microscopic origin of high-temperature superconductivity in cuprates remains unknown.
It is widely believed that substantial progress could be achieved by better understanding of …
It is widely believed that substantial progress could be achieved by better understanding of …
Observation of Cooper pairs in a mesoscopic two-dimensional Fermi gas
The formation of strongly correlated fermion pairs is fundamental for the emergence of
fermionic superfluidity and superconductivity. For instance, Cooper pairs made of two …
fermionic superfluidity and superconductivity. For instance, Cooper pairs made of two …
Crossover between strongly coupled and weakly coupled exciton superfluids
In fermionic systems, superconductivity and superfluidity occur through the condensation of
fermion pairs. The nature of this condensate can be tuned by varying the pairing strength …
fermion pairs. The nature of this condensate can be tuned by varying the pairing strength …
Observation of Pauli crystals
The Pauli exclusion principle is a fundamental law underpinning the structure of matter.
Because of their antisymmetric wave function, no two fermions can occupy the same …
Because of their antisymmetric wave function, no two fermions can occupy the same …
Anomalous breaking of scale invariance in a two-dimensional Fermi gas
The frequency of the breathing mode of a two-dimensional Fermi gas with zero-range
interactions in a harmonic confinement is fixed by the scale invariance of the Hamiltonian …
interactions in a harmonic confinement is fixed by the scale invariance of the Hamiltonian …
Observation of superfluidity in a strongly correlated two-dimensional Fermi gas
Understanding how strongly correlated two-dimensional (2D) systems can give rise to
unconventional superconductivity with high critical temperatures is one of the major …
unconventional superconductivity with high critical temperatures is one of the major …
Quantum anomaly and 2D-3D crossover in strongly interacting Fermi gases
We present an experimental investigation of collective oscillations in harmonically trapped
Fermi gases through the crossover from two to three dimensions. Specifically, we measure …
Fermi gases through the crossover from two to three dimensions. Specifically, we measure …
Angle-resolved photoemission spectroscopy of a Fermi–Hubbard system
Angle-resolved photoemission spectroscopy (ARPES) measures the single-particle
excitations of a many-body quantum system with energy and momentum resolution …
excitations of a many-body quantum system with energy and momentum resolution …
Superconductivity induced by strong electron-exciton coupling in doped atomically thin semiconductor heterostructures
We study a mechanism to induce superconductivity in atomically thin semiconductors where
excitons mediate an effective attraction between electrons. Our model includes interaction …
excitons mediate an effective attraction between electrons. Our model includes interaction …