The rapid progress in quantum information processing leads to a rising demand for devices to control the propagation of electromagnetic wave pulses and to ultimately realize universal and efficient quantum memory. While in recent years, significant progress has been made to realize slow light and quantum memories with atoms at optical frequencies, superconducting circuits in the microwave domain still lack such devices. Here, we demonstrate slowing down electromagnetic waves in a superconducting metamaterial composed of eight qubits coupled to a common waveguide, forming a waveguide quantum electrodynamics system. We analyze two complementary approaches, one relying on dressed states of the Autler–Townes splitting and the other based on a t...
Superconducting devices in circuit quantum electrodynamics (cQED) systems are one of the leading app...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
We introduce a quantum superconducting metamaterial design constituted of flux qubits that operate a...
The rapid progress in quantum information processing leads to a rising demand for devices to control...
The rapid progress in quantum information processing leads to a rising demand for devices to control...
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
Waveguide quantum electrodynamics (QED) refers to the study of quantum emitters (qubits) coupled to ...
Waveguide quantum electrodynamics offers a wide range of possibilities to effectively engineer inter...
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
The ability to pattern materials at the wavelength and sub-wavelength scale has led to the concept o...
Electromagnetic pulse propagation in a quantum metamaterial, an artificial, globally quantum coheren...
Quantum bits (qubits) are at the heart of quantum information processing schemes. Currently, solid-s...
A structured electromagnetic reservoir can result in novel dynamics of quantum emitters. In particul...
Superconducting devices in circuit quantum electrodynamics (cQED) systems are one of the leading app...
Superconducting devices in circuit quantum electrodynamics (cQED) systems are one of the leading app...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
We introduce a quantum superconducting metamaterial design constituted of flux qubits that operate a...
The rapid progress in quantum information processing leads to a rising demand for devices to control...
The rapid progress in quantum information processing leads to a rising demand for devices to control...
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
Waveguide quantum electrodynamics (QED) refers to the study of quantum emitters (qubits) coupled to ...
Waveguide quantum electrodynamics offers a wide range of possibilities to effectively engineer inter...
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
The ability to pattern materials at the wavelength and sub-wavelength scale has led to the concept o...
Electromagnetic pulse propagation in a quantum metamaterial, an artificial, globally quantum coheren...
Quantum bits (qubits) are at the heart of quantum information processing schemes. Currently, solid-s...
A structured electromagnetic reservoir can result in novel dynamics of quantum emitters. In particul...
Superconducting devices in circuit quantum electrodynamics (cQED) systems are one of the leading app...
Superconducting devices in circuit quantum electrodynamics (cQED) systems are one of the leading app...
Waveguide circuit quantum electrodynamics (waveguide circuit QED) studies light-matter interaction w...
We introduce a quantum superconducting metamaterial design constituted of flux qubits that operate a...