Nanoscale quantum dots in microwave cavities can be used as a laboratory for exploring electron-electron interactions and their spin in the presence of quantized light and a magnetic field. We show how a simple theoretical model of this interplay at resonance predicts complex but measurable effects. New polariton states emerge that combine spin, relative modes, and radiation. These states have intricate spin-space correlations and undergo polariton transitions controlled by the microwave cavity field. We uncover novel topological effects involving highly correlated spin and charge density that display singlet-triplet and inhomogeneous Bell-state distributions. Signatures of these transitions are imprinted in the photon distribution, which w...
The study of cavity magnonics and topological insulators has made significant advances over the past...
We explore the energetics of microwaves interacting with a double quantum dot photodiode structure a...
Spins confined in quantum dots are considered as a promising platform for quantum information proces...
The interplay between time-reversal symmetry breaking and strong light-matter coupling in 2D gases b...
Cavity quantum electrodynamics (C-QED) effects, such as Rabi splitting, Rabi oscillations and superr...
We present a microscopic model for a singly charged quantum dot (QD) ensemble to reveal the origin o...
International audienceCoupling on-chip microwave cavities to superconducting microcircuits has provi...
Exciton-light coupling in spherical microcavities containing quantum dots has been treated by means ...
Tremendous progress in few-qubit quantum processing has been achieved lately using superconducting r...
The orbital and spin magnetization of a cavity-embedded quantum dot array defined in a GaAs heterost...
Artifi cial molecules containing just one or two electrons provide a powerful platform for studies o...
Cavity magnonics deals with the interaction of magnons - elementary excitations in magnetic material...
The interaction of quantum objects lies at the heart of fundamental quantum physics and is key to a ...
Understanding physical properties of quantum emitters strongly interacting with quantized electromag...
This dissertation reports experiments investigating light-matter and light-microwave interface based...
The study of cavity magnonics and topological insulators has made significant advances over the past...
We explore the energetics of microwaves interacting with a double quantum dot photodiode structure a...
Spins confined in quantum dots are considered as a promising platform for quantum information proces...
The interplay between time-reversal symmetry breaking and strong light-matter coupling in 2D gases b...
Cavity quantum electrodynamics (C-QED) effects, such as Rabi splitting, Rabi oscillations and superr...
We present a microscopic model for a singly charged quantum dot (QD) ensemble to reveal the origin o...
International audienceCoupling on-chip microwave cavities to superconducting microcircuits has provi...
Exciton-light coupling in spherical microcavities containing quantum dots has been treated by means ...
Tremendous progress in few-qubit quantum processing has been achieved lately using superconducting r...
The orbital and spin magnetization of a cavity-embedded quantum dot array defined in a GaAs heterost...
Artifi cial molecules containing just one or two electrons provide a powerful platform for studies o...
Cavity magnonics deals with the interaction of magnons - elementary excitations in magnetic material...
The interaction of quantum objects lies at the heart of fundamental quantum physics and is key to a ...
Understanding physical properties of quantum emitters strongly interacting with quantized electromag...
This dissertation reports experiments investigating light-matter and light-microwave interface based...
The study of cavity magnonics and topological insulators has made significant advances over the past...
We explore the energetics of microwaves interacting with a double quantum dot photodiode structure a...
Spins confined in quantum dots are considered as a promising platform for quantum information proces...