Circuit quantum electrodynamics
Quantum-mechanical effects at the macroscopic level were first explored in Josephson-
junction-based superconducting circuits in the 1980s. In recent decades, the emergence of …
junction-based superconducting circuits in the 1980s. In recent decades, the emergence of …
Superconducting quantum computing: a review
HL Huang, D Wu, D Fan, X Zhu - Science China Information Sciences, 2020 - Springer
Over the last two decades, tremendous advances have been made for constructing large-
scale quantum computers. In particular, quantum computing platforms based on …
scale quantum computers. In particular, quantum computing platforms based on …
Microwave photonics with superconducting quantum circuits
In the past 20 years, impressive progress has been made both experimentally and
theoretically in superconducting quantum circuits, which provide a platform for manipulating …
theoretically in superconducting quantum circuits, which provide a platform for manipulating …
Demonstration of universal parametric entangling gates on a multi-qubit lattice
We show that parametric coupling techniques can be used to generate selective entangling
interactions for multi-qubit processors. By inducing coherent population exchange between …
interactions for multi-qubit processors. By inducing coherent population exchange between …
Measurement-induced transmon ionization
Despite the high measurement fidelity that can now be reached, the dispersive qubit readout
of circuit quantum electrodynamics is plagued by a loss of its quantum nondemolition …
of circuit quantum electrodynamics is plagued by a loss of its quantum nondemolition …
Parametrically activated entangling gates using transmon qubits
We describe and implement a family of entangling gates activated by radio-frequency flux
modulation applied to a tunable transmon that is statically coupled to a neighboring …
modulation applied to a tunable transmon that is statically coupled to a neighboring …
Deterministic generation of multidimensional photonic cluster states with a single quantum emitter
Entanglement is a key resource in quantum computing and other prospective technologies.
Multidimensional photonic graph states, such as cluster states, have a special entanglement …
Multidimensional photonic graph states, such as cluster states, have a special entanglement …
[HTML][HTML] Random access quantum information processors using multimode circuit quantum electrodynamics
Qubit connectivity is an important property of a quantum processor, with an ideal processor
having random access—the ability of arbitrary qubit pairs to interact directly. This a …
having random access—the ability of arbitrary qubit pairs to interact directly. This a …
Benchmarking the noise sensitivity of different parametric two-qubit gates in a single superconducting quantum computing platform
The possibility to utilize different types of two-qubit gates on a single quantum computing
platform adds flexibility in the decomposition of quantum algorithms. A larger hardware …
platform adds flexibility in the decomposition of quantum algorithms. A larger hardware …
Universal stabilization of a parametrically coupled qubit
We autonomously stabilize arbitrary states of a qubit through parametric modulation of the
coupling between a fixed frequency qubit and resonator. The coupling modulation is …
coupling between a fixed frequency qubit and resonator. The coupling modulation is …