We measure photon occupancy in a thin-film superconducting lumped element resonator coupled to a transmon qubit at 20mK and find a nonlinear dependence on the applied microwave power. The transmon-resonator system was operated in the strong dispersive regime, where the ac Stark shift (2χ) due to a single microwave photon present in the resonator was larger than the linewidth (Γ) of the qubit transition. When the resonator was coherently driven at 5.474 325 GHz, the transition spectrum of the transmon at 4.982 GHz revealed well-resolved peaks, each corresponding to an individual photon number-state of the resonator. From the relative peak heights we obtain the occupancy of the photon states and the average photon occupancy n¯ of the resonato...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
We have embedded an artificial atom, a superconducting transmon qubit, in an open transmission line ...
Microwave driving is a ubiquitous technique for superconducting qubits (SCQs), but the dressed state...
We measure photon occupancy in a thin-film superconducting lumped element resonator coupled to a tra...
International audienceQubit measurement and control in circuit quantum electrodynamics (QED) rely on...
International audienceSingle photon detection is a key resource for sensing at the quantum limit and...
Abstract In this thesis we study the interaction between radiation and matter using superconducting...
The exceptionally strong coupling realizable between superconducting qubits and photons stored in an...
PhD Thesis: Superconducting circuit quantum electrodynamics (QED) has developed into a powerful pla...
International audienceWe have observed the unconventional photon blockade effect for microwave photo...
We present a scheme for microwave photon detection via cross Kerr nonlinearity between two microwave...
We address recent advances in quantum optics with propagating microwavesin superconducting circuits....
We present measurements and modelling of the susceptibility of a 2D microstrip cavity coupled to a d...
The nonlinearity is essential for creation of non-classical states of the cavity or mechanical reson...
The quantum behavior of superconducting qubits coupled to resonators is very similar to that of atom...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
We have embedded an artificial atom, a superconducting transmon qubit, in an open transmission line ...
Microwave driving is a ubiquitous technique for superconducting qubits (SCQs), but the dressed state...
We measure photon occupancy in a thin-film superconducting lumped element resonator coupled to a tra...
International audienceQubit measurement and control in circuit quantum electrodynamics (QED) rely on...
International audienceSingle photon detection is a key resource for sensing at the quantum limit and...
Abstract In this thesis we study the interaction between radiation and matter using superconducting...
The exceptionally strong coupling realizable between superconducting qubits and photons stored in an...
PhD Thesis: Superconducting circuit quantum electrodynamics (QED) has developed into a powerful pla...
International audienceWe have observed the unconventional photon blockade effect for microwave photo...
We present a scheme for microwave photon detection via cross Kerr nonlinearity between two microwave...
We address recent advances in quantum optics with propagating microwavesin superconducting circuits....
We present measurements and modelling of the susceptibility of a 2D microstrip cavity coupled to a d...
The nonlinearity is essential for creation of non-classical states of the cavity or mechanical reson...
The quantum behavior of superconducting qubits coupled to resonators is very similar to that of atom...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
We have embedded an artificial atom, a superconducting transmon qubit, in an open transmission line ...
Microwave driving is a ubiquitous technique for superconducting qubits (SCQs), but the dressed state...