We consider a disordered quantum metamaterial formed by an array of superconducting flux qubits coupled to microwave photons in a cavity. We map the system on the Tavis-Cummings model accounting for the disorder in frequencies of the qubits. The complex transmittance is calculated with the parameters taken from state-of-the-art experiments. We demonstrate that photon phase shift measurements allow to distinguish individual resonances in the metamaterial with up to 100 qubits, in spite of the decoherence spectral width being remarkably larger than the effective coupling constant. Our simulations are in agreement with the results of the recently reported experiment
The optical properties of metamaterials are prescribed not only by the properties of their constitut...
The zero-point energy stored in the modes of an electromagnetic cavity has experimentally detectable...
We consider the propagation of a classical electromagnetic wave through a transmission line, formed ...
We consider a disordered quantum metamaterial formed by an array of superconducting flux qubits coup...
We consider a disordered quantum metamaterial formed by an array of superconducting flux qubits coup...
We explore experimentally a quantum metamaterial based on a superconducting chip with 25 frequency-t...
Quantum metamaterials consist of quantum coherent structures made up of artificial atoms connected b...
We provide detailed comparisons between experimental findings and numerical simulations of large coo...
We address recent advances in quantum optics with propagating microwavesin superconducting circuits....
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
The field of metamaterial research revolves around the idea of creating artificial media that intera...
Quantum theory is expected to govern the electromagnetic properties of a quantum metamaterial, an ar...
Electromagnetic pulse propagation in a quantum metamaterial, an artificial, globally quantum coheren...
A metastable phase qubit was measured using a tunable cavity by two methods: a tunneling measurement...
Light interaction with disordered materials is both complex and fascinating at the same time. Here, ...
The optical properties of metamaterials are prescribed not only by the properties of their constitut...
The zero-point energy stored in the modes of an electromagnetic cavity has experimentally detectable...
We consider the propagation of a classical electromagnetic wave through a transmission line, formed ...
We consider a disordered quantum metamaterial formed by an array of superconducting flux qubits coup...
We consider a disordered quantum metamaterial formed by an array of superconducting flux qubits coup...
We explore experimentally a quantum metamaterial based on a superconducting chip with 25 frequency-t...
Quantum metamaterials consist of quantum coherent structures made up of artificial atoms connected b...
We provide detailed comparisons between experimental findings and numerical simulations of large coo...
We address recent advances in quantum optics with propagating microwavesin superconducting circuits....
Embedding tunable quantum emitters in a photonic bandgap structure enables control of dissipative an...
The field of metamaterial research revolves around the idea of creating artificial media that intera...
Quantum theory is expected to govern the electromagnetic properties of a quantum metamaterial, an ar...
Electromagnetic pulse propagation in a quantum metamaterial, an artificial, globally quantum coheren...
A metastable phase qubit was measured using a tunable cavity by two methods: a tunneling measurement...
Light interaction with disordered materials is both complex and fascinating at the same time. Here, ...
The optical properties of metamaterials are prescribed not only by the properties of their constitut...
The zero-point energy stored in the modes of an electromagnetic cavity has experimentally detectable...
We consider the propagation of a classical electromagnetic wave through a transmission line, formed ...