We investigate the quantum metrological power of typical continuous-variable (CV) quantum networks. Particularly, we show that most CV quantum networks provide an entanglement to quantum states in distant nodes that enables one to achieve the Heisenberg scaling in the number of modes for distributed quantum displacement sensing, which cannot be attained using an unentangled probe state. Notably, our scheme only requires local operations and measurements after generating an entangled probe using the quantum network. In addition, we find a tolerable photon-loss rate that maintains the quantum enhancement. Finally, we numerically demonstrate that even when CV quantum networks are composed of local beam splitters, the quantum enhancement can be...
In this dissertation,we mainly focus on distributed quantum sensing which uses different sensing nod...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
The field of quantum communications promises the faithful distribution of quantum information, quant...
A distributed sensing protocol uses a network of local sensing nodes to estimate a global feature of...
A continuous variable (CV), measurement device independent (MDI) quantum key distribution (QKD) prot...
Recent developments in Quantum Machine Learning have seen the introduction of several models to gene...
The continuous quadratures of a single mode of the light field present a promising avenue to encode ...
The inherent noise and complexity of quantum communication networks leads to challenges in designing...
The Continuous-Variable (CV) quantum state of light allows for the teleportation of a Discrete-Varia...
Variational quantum algorithms (VQAs) provide a promising approach to achieving quantum advantage fo...
Quantum metrology takes advantage of nonclassical resources such as squeezing and entanglement to ac...
Quantum sensors outperform their classical counterparts in their estimation precision, given the sam...
Quantum communication channels and quantum memories are the fundamental building blocks of large-sca...
Quantum metrology takes advantage of nonclassical resources such as entanglement to achieve a sensit...
Quantum communication research has in recent years shifted to include multi-partite networks for whi...
In this dissertation,we mainly focus on distributed quantum sensing which uses different sensing nod...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
The field of quantum communications promises the faithful distribution of quantum information, quant...
A distributed sensing protocol uses a network of local sensing nodes to estimate a global feature of...
A continuous variable (CV), measurement device independent (MDI) quantum key distribution (QKD) prot...
Recent developments in Quantum Machine Learning have seen the introduction of several models to gene...
The continuous quadratures of a single mode of the light field present a promising avenue to encode ...
The inherent noise and complexity of quantum communication networks leads to challenges in designing...
The Continuous-Variable (CV) quantum state of light allows for the teleportation of a Discrete-Varia...
Variational quantum algorithms (VQAs) provide a promising approach to achieving quantum advantage fo...
Quantum metrology takes advantage of nonclassical resources such as squeezing and entanglement to ac...
Quantum sensors outperform their classical counterparts in their estimation precision, given the sam...
Quantum communication channels and quantum memories are the fundamental building blocks of large-sca...
Quantum metrology takes advantage of nonclassical resources such as entanglement to achieve a sensit...
Quantum communication research has in recent years shifted to include multi-partite networks for whi...
In this dissertation,we mainly focus on distributed quantum sensing which uses different sensing nod...
Entanglement is generally considered necessary for achieving the Heisenberg limit in quantum metrolo...
The field of quantum communications promises the faithful distribution of quantum information, quant...