In this work, I investigate how to implement and quantify \emph{in-situ} tunable quantum interface between superconducting qubits and resonators using external transverse driving fields beyond the rotating wave approximation (RWA). When studying the system under the time-periodic driving field, we typically rely on RWA, a useful technique that significantly reduces the analytical difficulties in solving the dynamics with time-dependent Hamiltonian. Nonetheless, it does not correctly describe the systems' dynamics when the drive fields are excessively strong and far off-resonant. Especially in circuit QED platform, the RWA often breakdowns. Many studies before, however, mainly focus on the transition frequency shifts. How the RWA distorts th...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).In this work we show that a ...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.82.132501.We ...
In this paper, we analytically and numerically study the sideband interaction dynamics of the driven...
In this work, I investigate how to implement and quantify \emph{in-situ} tunable quantum interface b...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
In this thesis, we will present the theoretical and experimental work that led to the realization of...
In this thesis, we will present the theoretical and experimental work that led to the realization of...
PhD Thesis: Superconducting circuit quantum electrodynamics (QED) has developed into a powerful pla...
In this work, we analytically and numerically study the sideband transition dynamics of the driven q...
Microwave driving is a ubiquitous technique for superconducting qubits (SCQs), but the dressed state...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
In this thesis, measurements on superconducting electrical circuits that exhibit quantum mechanical ...
Circuit quantum electrodynamics (QED) studies the interaction of artificial atoms, open transmission...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).In this work we show that a ...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.82.132501.We ...
In this paper, we analytically and numerically study the sideband interaction dynamics of the driven...
In this work, I investigate how to implement and quantify \emph{in-situ} tunable quantum interface b...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
We have fabricated and characterized systems consisting of superconducting quantum bits (qubits) of ...
In this thesis, we will present the theoretical and experimental work that led to the realization of...
In this thesis, we will present the theoretical and experimental work that led to the realization of...
PhD Thesis: Superconducting circuit quantum electrodynamics (QED) has developed into a powerful pla...
In this work, we analytically and numerically study the sideband transition dynamics of the driven q...
Microwave driving is a ubiquitous technique for superconducting qubits (SCQs), but the dressed state...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
Generating high-fidelity, tunable entanglement between qubits is crucial for realizing gate-based qu...
In this thesis, measurements on superconducting electrical circuits that exhibit quantum mechanical ...
Circuit quantum electrodynamics (QED) studies the interaction of artificial atoms, open transmission...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).In this work we show that a ...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.82.132501.We ...
In this paper, we analytically and numerically study the sideband interaction dynamics of the driven...