In quantum optics, light–matter interaction has conventionally been studied using small atoms interacting with electromagnetic fields with wavelength several orders of magnitude larger than the atomic dimensions1,2. In contrast, here we experimentally demonstrate the vastly different ‘giant atom’ regime, where an artificial atom interacts with acoustic fields with wavelength several orders of magnitude smaller than the atomic dimensions. This is achieved by coupling a superconducting qubit3 to surface acoustic waves at two points with separation on the order of 100 wavelengths. This approach is comparable to controlling the radiation of an atom by attaching it to an antenna. The slow velocity of sound leads to a significant internal time-de...
In traditional quantum optics, where the interaction between atoms and light at optical frequencies ...
We investigate the non-Markovian dynamics of two giant artificial atoms interacting with a continuum...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
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...
Quantum optics is the study of interaction between atoms and photons. In the eight papers of this th...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Models of light–matter in...
We investigate the quantum dynamics of a single transmon qubit coupled to surface acoustic waves (SA...
© 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...
In traditional quantum optics, where the interaction between atoms and light at optical frequencies ...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
In traditional quantum optics, where the interaction between atoms and light at optical frequencies ...
We investigate the non-Markovian dynamics of two giant artificial atoms interacting with a continuum...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
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...
Quantum optics is the study of interaction between atoms and photons. In the eight papers of this th...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Models of light–matter in...
We investigate the quantum dynamics of a single transmon qubit coupled to surface acoustic waves (SA...
© 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...
In traditional quantum optics, where the interaction between atoms and light at optical frequencies ...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...
In traditional quantum optics, where the interaction between atoms and light at optical frequencies ...
We investigate the non-Markovian dynamics of two giant artificial atoms interacting with a continuum...
Spontaneous emission of an excited atom in a featureless continuum of electromagnetic modes is a fun...