A universal, large-scale quantum computer would be a powerful tool with applications of high value to mankind. For example, such a computer could significantly speed up the search for new medications or materials. However, the error rates of current qubit designs are simply too large to enable interesting computations. Therefore, both error correction and improved designs of qubits are needed. In 2001, Gottesman, Kitaev and Preskill proposed an encoding (GKP code) where a qubit is stored in a harmonic oscillator — a system that can be controlled and manufactured with high precision, and therefore have comparatively high coherence times. Moreover, the code offers good protection against losses, a simple gate set, and error correction circuit...
Quantum computing is the field that studies computation using quantum mechanical systems, exploiting...
The Gottesman-Kitaev-Preskill (GKP) encoding of a qubit within an oscillator provides a number of ad...
54 pages; 18 Figs; 3 Appendices; invited topical review for Quantum Science & Technology. v2 has a f...
A universal, large-scale quantum computer would be a powerful tool with applications of high value t...
Encoding quantum information into a set of harmonic oscillators is considered a hardware efficient a...
International audienceStraightforward logical operations contrasting with complex state preparation ...
Text and figures edited for clarity. The claims of the paper remain the same. Author list fixedInter...
Text and figures edited for clarity. The claims of the paper remain the same. Author list fixedInter...
A quantum computer with low-error, high-speed quantum operations and capability for interconnections...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
We review some of the recent efforts in devising and engineering bosonic qubits for superconducting ...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
This thesis focuses on photonic implementations of two quantum technologies: quantum computers and q...
Performing experiments on small-scale quantum computers is certainly a challenging endeavor. Many pa...
Quantum computing is the field that studies computation using quantum mechanical systems, exploiting...
The Gottesman-Kitaev-Preskill (GKP) encoding of a qubit within an oscillator provides a number of ad...
54 pages; 18 Figs; 3 Appendices; invited topical review for Quantum Science & Technology. v2 has a f...
A universal, large-scale quantum computer would be a powerful tool with applications of high value t...
Encoding quantum information into a set of harmonic oscillators is considered a hardware efficient a...
International audienceStraightforward logical operations contrasting with complex state preparation ...
Text and figures edited for clarity. The claims of the paper remain the same. Author list fixedInter...
Text and figures edited for clarity. The claims of the paper remain the same. Author list fixedInter...
A quantum computer with low-error, high-speed quantum operations and capability for interconnections...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
We review some of the recent efforts in devising and engineering bosonic qubits for superconducting ...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
This thesis focuses on photonic implementations of two quantum technologies: quantum computers and q...
Performing experiments on small-scale quantum computers is certainly a challenging endeavor. Many pa...
Quantum computing is the field that studies computation using quantum mechanical systems, exploiting...
The Gottesman-Kitaev-Preskill (GKP) encoding of a qubit within an oscillator provides a number of ad...
54 pages; 18 Figs; 3 Appendices; invited topical review for Quantum Science & Technology. v2 has a f...