International audienceWhen the coupling rate between two quantum systems becomes as large as their characteristic frequencies, it induces dramatic effects on their dynamics and even on the nature of their ground state. The case of a qubit coupled to a harmonic oscillator in this ultrastrong coupling regime has been investigated theoretically and experimentally. Here, we explore the case of two harmonic oscillators in the ultrastrong coupling regime. Probing the properties of their ground state remains out of reach in natural implementations. Therefore, we have realized an analog quantum simulation of this coupled system by dual frequency pumping a nonlinear superconducting circuit. The pump amplitudes directly tune the effective coupling ra...
21 pages, 15 figuresThe interaction strength of an oscillator to a qubit grows with the oscillator's...
We measure the dispersive energy-level shift of an LC resonator magnetically coupled to a supercondu...
We investigate the strong-coupling regime of a linear x-x coupled harmonic-oscillator system by perf...
International audienceWhen the coupling rate between two quantum systems becomes as large as their c...
Under the terms of the Creative Commons Attribution license.-- et al.We report on ultrastrong coupli...
Light-matter coupling with strength comparable to the bare transition frequencies of the system is c...
We examine a two-level system coupled to a quantum oscillator, typically representing experiments in...
We propose a method to get experimental access to the physics of the ultrastrong- and deep-strong-co...
With the introduction of superconducting circuits into the field of quantum optics, many experimenta...
The ability to coherently couple arbitrary harmonic oscillators in a fully-controlled way is an impo...
13 pags., 7 figs., 1 tab., 1 app.We study a circuit QED setup where multiple superconducting qubits ...
Analog quantum simulations offer rich opportunities for exploring complex quantum systems and phenom...
10 págs.; 8 figs.; 3 apps.We study effective light-matter interactions in a circuit QED system consi...
This thesis explores nonlinear couplings in superconducting circuits with the purpose of achieving q...
21 pages, 15 figuresThe interaction strength of an oscillator to a qubit grows with the oscillator's...
We measure the dispersive energy-level shift of an LC resonator magnetically coupled to a supercondu...
We investigate the strong-coupling regime of a linear x-x coupled harmonic-oscillator system by perf...
International audienceWhen the coupling rate between two quantum systems becomes as large as their c...
Under the terms of the Creative Commons Attribution license.-- et al.We report on ultrastrong coupli...
Light-matter coupling with strength comparable to the bare transition frequencies of the system is c...
We examine a two-level system coupled to a quantum oscillator, typically representing experiments in...
We propose a method to get experimental access to the physics of the ultrastrong- and deep-strong-co...
With the introduction of superconducting circuits into the field of quantum optics, many experimenta...
The ability to coherently couple arbitrary harmonic oscillators in a fully-controlled way is an impo...
13 pags., 7 figs., 1 tab., 1 app.We study a circuit QED setup where multiple superconducting qubits ...
Analog quantum simulations offer rich opportunities for exploring complex quantum systems and phenom...
10 págs.; 8 figs.; 3 apps.We study effective light-matter interactions in a circuit QED system consi...
This thesis explores nonlinear couplings in superconducting circuits with the purpose of achieving q...
21 pages, 15 figuresThe interaction strength of an oscillator to a qubit grows with the oscillator's...
We measure the dispersive energy-level shift of an LC resonator magnetically coupled to a supercondu...
We investigate the strong-coupling regime of a linear x-x coupled harmonic-oscillator system by perf...