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Coherent control of single electrons: a review of current progress
In this report we review the present state of the art of the control of propagating quantum
states at the single-electron level and its potential application to quantum information …
states at the single-electron level and its potential application to quantum information …
Many-body physics with ultracold gases
This paper reviews recent experimental and theoretical progress concerning many-body
phenomena in dilute, ultracold gases. It focuses on effects beyond standard weak-coupling …
phenomena in dilute, ultracold gases. It focuses on effects beyond standard weak-coupling …
Exploration of doped quantum magnets with ultracold atoms
In the last decade, quantum simulators, and in particular cold atoms in optical lattices, have
emerged as a valuable tool to study strongly correlated quantum matter. These experiments …
emerged as a valuable tool to study strongly correlated quantum matter. These experiments …
[HTML][HTML] Probing quantum devices with radio-frequency reflectometry
Many important phenomena in quantum devices are dynamic, meaning that they cannot be
studied using time-averaged measurements alone. Experiments that measure such transient …
studied using time-averaged measurements alone. Experiments that measure such transient …
One-dimensional Luttinger liquids in a two-dimensional moiré lattice
The Luttinger liquid (LL) model of one-dimensional (1D) electronic systems provides a
powerful tool for understanding strongly correlated physics, including phenomena such as …
powerful tool for understanding strongly correlated physics, including phenomena such as …
Quantum transport in carbon nanotubes
Carbon nanotubes are a versatile material in which many aspects of condensed matter
physics come together. Recent discoveries have uncovered new phenomena that …
physics come together. Recent discoveries have uncovered new phenomena that …
Observation of separated dynamics of charge and spin in the Fermi-Hubbard model
Strongly correlated quantum systems give rise to many exotic physical phenomena,
including high-temperature superconductivity. Simulating these systems on quantum …
including high-temperature superconductivity. Simulating these systems on quantum …
One-dimensional quantum liquids: Beyond the Luttinger liquid paradigm
For many years, the Luttinger liquid theory has served as a useful paradigm for the
description of one-dimensional (1D) quantum fluids in the limit of low energies. This theory is …
description of one-dimensional (1D) quantum fluids in the limit of low energies. This theory is …
Time-resolved observation of spin-charge deconfinement in fermionic Hubbard chains
Elementary particles carry several quantum numbers, such as charge and spin. However, in
an ensemble of strongly interacting particles, the emerging degrees of freedom can …
an ensemble of strongly interacting particles, the emerging degrees of freedom can …
Spin transport in a Mott insulator of ultracold fermions
Strongly correlated materials are expected to feature unconventional transport properties,
such that charge, spin, and heat conduction are potentially independent probes of the …
such that charge, spin, and heat conduction are potentially independent probes of the …