Turnitin
降AI改写
早检测系统
早降重系统
Turnitin-UK版
万方检测-期刊版
维普编辑部版
Grammarly检测
Paperpass检测
checkpass检测
PaperYY检测
Microwave photonics with superconducting quantum circuits
In the past 20 years, impressive progress has been made both experimentally and
theoretically in superconducting quantum circuits, which provide a platform for manipulating …
theoretically in superconducting quantum circuits, which provide a platform for manipulating …
Colloquium: Strongly interacting photons in one-dimensional continuum
Photon-photon scattering in vacuum is extremely weak. However, strong effective
interactions between single photons can be realized by employing strong light-matter …
interactions between single photons can be realized by employing strong light-matter …
On-demand directional microwave photon emission using waveguide quantum electrodynamics
Routing quantum information between non-local computational nodes is a foundation for
extensible networks of quantum processors. Quantum information transfer between arbitrary …
extensible networks of quantum processors. Quantum information transfer between arbitrary …
Resonance fluorescence of a chiral artificial atom
We demonstrate a superconducting artificial atom with strong unidirectional coupling to a
microwave photonic waveguide. Our artificial atom is realized by coupling a transmon qubit …
microwave photonic waveguide. Our artificial atom is realized by coupling a transmon qubit …
Waveguide quantum electrodynamics with superconducting artificial giant atoms
Abstract Models of light–matter interactions in quantum electrodynamics typically invoke the
dipole approximation,, in which atoms are treated as point-like objects when compared to …
dipole approximation,, in which atoms are treated as point-like objects when compared to …
Decoherence-free interaction between giant atoms in waveguide quantum electrodynamics
In quantum-optics experiments with both natural and artificial atoms, the atoms are usually
small enough that they can be approximated as pointlike compared to the wavelength of the …
small enough that they can be approximated as pointlike compared to the wavelength of the …
Generation of two-giant-atom entanglement in waveguide-QED systems
We study the generation of quantum entanglement between two giant atoms coupled to a
one-dimensional waveguide. Since each giant atom interacts with the waveguide at two …
one-dimensional waveguide. Since each giant atom interacts with the waveguide at two …
Engineering the level structure of a giant artificial atom in waveguide quantum electrodynamics
Engineering light-matter interactions at the quantum level has been central to the pursuit of
quantum optics for decades. Traditionally, this has been done by coupling emitters, typically …
quantum optics for decades. Traditionally, this has been done by coupling emitters, typically …
Input-output theory for waveguide QED with an ensemble of inhomogeneous atoms
We study the collective effects that emerge in waveguide quantum electrodynamics where
several (artificial) atoms are coupled to a one-dimensional superconducting transmission …
several (artificial) atoms are coupled to a one-dimensional superconducting transmission …
Designing frequency-dependent relaxation rates and Lamb shifts for a giant artificial atom
In traditional quantum optics, where the interaction between atoms and light at optical
frequencies is studied, the atoms can be approximated as pointlike when compared to the …
frequencies is studied, the atoms can be approximated as pointlike when compared to the …