We investigate the relaxation dynamics of a single artificial atom interacting, via multiple coupling points, with a continuum of bosonic modes (photons or phonons) in a one-dimensional waveguide. In the non-Markovian regime, where the traveling time of a photon or phonon between the coupling points is sufficiently large compared to the inverse of the bare relaxation rate of the atom, we find that a boson can be trapped and form a stable bound state. As a key discovery, we further find that a persistently oscillating bound state can appear inside the continuous spectrum of the waveguide if the number of coupling points is more than two since such a setup enables multiple bound modes to coexist. This opens up prospects for storing and manipu...
We investigate the behavior of two quantum emitters (two-level atoms) embedded in a linear waveguide...
In quantum optics, light-matter interaction has conventionally been studied using small atoms intera...
We discuss the properties of atom-photon bound states in waveguide QED systems consisting of single ...
We investigate the relaxation dynamics of a single artificial atom interacting, via multiple couplin...
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...
It is of fundamental interest in controlling the light-matter interaction for a long time in the fie...
It is known that the superposition of two bound states in the continuum (BIC) leads to the phenomeno...
In quantum-optics experiments with both natural and artificial atoms, the atoms are usually small en...
We explore the dynamics of $N$ coupled atoms to a generic bosonic reservoir under specific system sy...
We investigate the non-Markovian dynamics of two giant artificial atoms interacting with a continuum...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Models of light–matter in...
© 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...
We investigate the behavior of two quantum emitters (two-level atoms) embedded in a linear waveguide...
We investigate the behavior of two quantum emitters (two-level atoms) embedded in a linear waveguide...
In quantum optics, light-matter interaction has conventionally been studied using small atoms intera...
We discuss the properties of atom-photon bound states in waveguide QED systems consisting of single ...
We investigate the relaxation dynamics of a single artificial atom interacting, via multiple couplin...
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...
It is of fundamental interest in controlling the light-matter interaction for a long time in the fie...
It is known that the superposition of two bound states in the continuum (BIC) leads to the phenomeno...
In quantum-optics experiments with both natural and artificial atoms, the atoms are usually small en...
We explore the dynamics of $N$ coupled atoms to a generic bosonic reservoir under specific system sy...
We investigate the non-Markovian dynamics of two giant artificial atoms interacting with a continuum...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Models of light–matter in...
© 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...
We investigate the behavior of two quantum emitters (two-level atoms) embedded in a linear waveguide...
We investigate the behavior of two quantum emitters (two-level atoms) embedded in a linear waveguide...
In quantum optics, light-matter interaction has conventionally been studied using small atoms intera...
We discuss the properties of atom-photon bound states in waveguide QED systems consisting of single ...