© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Models of light–matter interactions in quantum electrodynamics typically invoke the dipole approximation1,2, in which atoms are treated as point-like objects when compared to the wavelength of the electromagnetic modes with which they interact. However, when the ratio between the size of the atom and the mode wavelength is increased, the dipole approximation no longer holds and the atom is referred to as a ‘giant atom’2,3. So far, experimental studies with solid-state devices in the giant-atom regime have been limited to superconducting qubits that couple to short-wavelength surface acoustic waves4–10, probing the properties of the atom at only a single frequency. He...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
In quantum optics, light-matter interaction has conventionally been studied using small atoms intera...
6 pags. 4 figs.Emitters coupled simultaneously to distant positions of a photonic bath, the so-calle...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Models of light–matter in...
Models of light–matter interactions in quantum electrodynamics typically invoke the dipole approxima...
Experiments utilizing quantum optics have progressed rapidly in last few decades, particularly in th...
In quantum-optics experiments with both natural and artificial atoms, the atoms are usually small en...
Quantum optics is the study of interaction between atoms and photons. In the eight papers of this th...
In quantum optics, it is common to assume that atoms are pointlike objects compared to the wavelengt...
Giant atoms that interact with real-space waveguides at multiple spatial points have attracted exten...
Artificially engineered atoms, built using superconducting electrical circuits, have had a broad imp...
Quantum optics with giant emitters has shown a new route for the observation and manipulation of non...
Quantum optics with giant emitters has shown a new route for the observation and manipulation of non...
In quantum optics, light–matter interaction has conventionally been studied using small atoms intera...
In quantum optics, light–matter interaction has conventionally been studied using small atoms intera...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
In quantum optics, light-matter interaction has conventionally been studied using small atoms intera...
6 pags. 4 figs.Emitters coupled simultaneously to distant positions of a photonic bath, the so-calle...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Models of light–matter in...
Models of light–matter interactions in quantum electrodynamics typically invoke the dipole approxima...
Experiments utilizing quantum optics have progressed rapidly in last few decades, particularly in th...
In quantum-optics experiments with both natural and artificial atoms, the atoms are usually small en...
Quantum optics is the study of interaction between atoms and photons. In the eight papers of this th...
In quantum optics, it is common to assume that atoms are pointlike objects compared to the wavelengt...
Giant atoms that interact with real-space waveguides at multiple spatial points have attracted exten...
Artificially engineered atoms, built using superconducting electrical circuits, have had a broad imp...
Quantum optics with giant emitters has shown a new route for the observation and manipulation of non...
Quantum optics with giant emitters has shown a new route for the observation and manipulation of non...
In quantum optics, light–matter interaction has conventionally been studied using small atoms intera...
In quantum optics, light–matter interaction has conventionally been studied using small atoms intera...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
In quantum optics, light-matter interaction has conventionally been studied using small atoms intera...
6 pags. 4 figs.Emitters coupled simultaneously to distant positions of a photonic bath, the so-calle...