We propose different designs of switchable coupling between a superconducting flux qubit and a microwave transmission line. They are based on two or more loops of Josephson junctions which are directly connected to a closed (cavity) or open transmission line. In both cases the circuit induces a coupling that can be modulated in strength, reaching the so-called ultrastrong coupling regime in which the coupling is comparable to the qubit and photon frequencies. Furthermore, we suggest a wide set of applications for the introduced architectures.Kavli Institute of NanoscienceApplied Science
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
Coupling double-quantum-dot circuits to microwave cavities provides a powerful means to control, cou...
We present the design of an inductively shunted transmon qubit with flux-tunable coupling to an embe...
We propose different designs of switchable coupling between a superconducting flux qubit and a micro...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).In this work we show that a ...
We report on ultrastrong coupling between a superconducting flux qubit and a resonant mode of a syst...
In this work we show that a tunable coupling between microwave resonators can be engineered by means...
We present a circuit construction for a fixed-frequency superconducting qubit and show how it can be...
In circuit quantum electrodynamics1–10 (QED), where super-conducting artificial atoms are coupled to...
We report on a robust method to achieve strong coupling between a superconducting flux qubit and a h...
Coherent manipulation of a quantum system is one of the main themes in current physics researches. I...
The research reported here details experimental progress toward future superconductor-based quantum ...
13 pags., 7 figs., 1 tab., 1 app.We study a circuit QED setup where multiple superconducting qubits ...
Engineering selection rules of transitions is a useful strategy for coupling and decoupling qubits i...
International audienceVariable microwave-frequency couplers are highly useful components in classica...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
Coupling double-quantum-dot circuits to microwave cavities provides a powerful means to control, cou...
We present the design of an inductively shunted transmon qubit with flux-tunable coupling to an embe...
We propose different designs of switchable coupling between a superconducting flux qubit and a micro...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).In this work we show that a ...
We report on ultrastrong coupling between a superconducting flux qubit and a resonant mode of a syst...
In this work we show that a tunable coupling between microwave resonators can be engineered by means...
We present a circuit construction for a fixed-frequency superconducting qubit and show how it can be...
In circuit quantum electrodynamics1–10 (QED), where super-conducting artificial atoms are coupled to...
We report on a robust method to achieve strong coupling between a superconducting flux qubit and a h...
Coherent manipulation of a quantum system is one of the main themes in current physics researches. I...
The research reported here details experimental progress toward future superconductor-based quantum ...
13 pags., 7 figs., 1 tab., 1 app.We study a circuit QED setup where multiple superconducting qubits ...
Engineering selection rules of transitions is a useful strategy for coupling and decoupling qubits i...
International audienceVariable microwave-frequency couplers are highly useful components in classica...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
Coupling double-quantum-dot circuits to microwave cavities provides a powerful means to control, cou...
We present the design of an inductively shunted transmon qubit with flux-tunable coupling to an embe...