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 …
Quantum information processing with superconducting circuits: a review
G Wendin - Reports on Progress in Physics, 2017 - iopscience.iop.org
During the last ten years, superconducting circuits have passed from being interesting
physical devices to becoming contenders for near-future useful and scalable quantum …
physical devices to becoming contenders for near-future useful and scalable quantum …
A near–quantum-limited Josephson traveling-wave parametric amplifier
Detecting single–photon level signals—carriers of both classical and quantum information—
is particularly challenging for low-energy microwave frequency excitations. Here we …
is particularly challenging for low-energy microwave frequency excitations. Here we …
Deterministic multi-qubit entanglement in a quantum network
The generation of high-fidelity distributed multi-qubit entanglement is a challenging task for
large-scale quantum communication and computational networks,,–. The deterministic …
large-scale quantum communication and computational networks,,–. The deterministic …
To catch and reverse a quantum jump mid-flight
In quantum physics, measurements can fundamentally yield discrete and random results.
Emblematic of this feature is Bohr's 1913 proposal of quantum jumps between two discrete …
Emblematic of this feature is Bohr's 1913 proposal of quantum jumps between two discrete …
Experimental demonstration of continuous quantum error correction
The storage and processing of quantum information are susceptible to external noise,
resulting in computational errors. A powerful method to suppress these effects is quantum …
resulting in computational errors. A powerful method to suppress these effects is quantum …
Deterministic quantum state transfer and remote entanglement using microwave photons
Sharing information coherently between nodes of a quantum network is fundamental to
distributed quantum information processing. In this scheme, the computation is divided into …
distributed quantum information processing. In this scheme, the computation is divided into …
Coherent control of single electrons: a review of current progress
In this report we review the present state of the art of the control of propagating quantum
states at the single-electron level and its potential application to quantum information …
states at the single-electron level and its potential application to quantum information …
Deterministic teleportation of a quantum gate between two logical qubits
A quantum computer has the potential to efficiently solve problems that are intractable for
classical computers. However, constructing a large-scale quantum processor is challenging …
classical computers. However, constructing a large-scale quantum processor is challenging …
On-demand quantum state transfer and entanglement between remote microwave cavity memories
Coupling isolated quantum systems through propagating photons is a central theme in
quantum science,, with the potential for groundbreaking applications such as distributed …
quantum science,, with the potential for groundbreaking applications such as distributed …