Entanglement has shown promise in enhancing information processing tasks in a sensor network via distributed quantum sensing protocols. As noise is ubiquitous in sensor networks, error correction schemes based on Gottesman-Kitaev-Preskill (GKP) states are required to enhance the performance, as shown in [Q. Zhuang, J. Preskill, and L. Jiang, New J. Phys. 22, 022001 (2020)1367-263010.1088/1367-2630/ab7257] assuming homogeneous noise among sensors and perfect GKP states. Here, we extend the analyses of performance enhancement to finite-squeezed GKP states in a heterogeneous noise model. To begin with, we study different concatenation schemes of GKP-two-mode-squeezing codes. While traditional sequential concatenation schemes in previous works ...
We propose a quantum error correction protocol for continuous-variable finite-energy, approximate Go...
Quantum sensors are used for precision timekeeping, field sensing, and quantum communication. Compar...
An important problem in quantum information theory is finding the best possible performance of the o...
Entanglement has shown promise in enhancing information processing tasks in a sensor network, via di...
A distributed sensing protocol uses a network of local sensing nodes to estimate a global feature of...
Quantum metrology takes advantage of nonclassical resources such as squeezing and entanglement to ac...
International audienceWe examine the performance of the single-mode Gottesman-Kitaev-Preskill (GKP) ...
In this dissertation,we mainly focus on distributed quantum sensing which uses different sensing nod...
Graph states are a central resource in measurement-based quantum information processing. In the phot...
In the near-term, the number of qubits in quantum computers will be limited to a few hundreds. There...
In quantum reading, a quantum state of light (transmitter) is applied to read classical information....
Entanglement is a unique resource for quantum-enhanced applications. When employed in sensing, share...
We consider distributed sensing of nonlocal quantities. We introduce quantum enhanced protocols to d...
The quantum enhanced classical sensor network consists of K clusters of Ne entangled quantum states ...
We propose two schemes to obtain Gottesman-Kitaev-Preskill (GKP) error syndromes by means of linear ...
We propose a quantum error correction protocol for continuous-variable finite-energy, approximate Go...
Quantum sensors are used for precision timekeeping, field sensing, and quantum communication. Compar...
An important problem in quantum information theory is finding the best possible performance of the o...
Entanglement has shown promise in enhancing information processing tasks in a sensor network, via di...
A distributed sensing protocol uses a network of local sensing nodes to estimate a global feature of...
Quantum metrology takes advantage of nonclassical resources such as squeezing and entanglement to ac...
International audienceWe examine the performance of the single-mode Gottesman-Kitaev-Preskill (GKP) ...
In this dissertation,we mainly focus on distributed quantum sensing which uses different sensing nod...
Graph states are a central resource in measurement-based quantum information processing. In the phot...
In the near-term, the number of qubits in quantum computers will be limited to a few hundreds. There...
In quantum reading, a quantum state of light (transmitter) is applied to read classical information....
Entanglement is a unique resource for quantum-enhanced applications. When employed in sensing, share...
We consider distributed sensing of nonlocal quantities. We introduce quantum enhanced protocols to d...
The quantum enhanced classical sensor network consists of K clusters of Ne entangled quantum states ...
We propose two schemes to obtain Gottesman-Kitaev-Preskill (GKP) error syndromes by means of linear ...
We propose a quantum error correction protocol for continuous-variable finite-energy, approximate Go...
Quantum sensors are used for precision timekeeping, field sensing, and quantum communication. Compar...
An important problem in quantum information theory is finding the best possible performance of the o...