Major obstacles against efficient long-distance quantum communication are photon losses during transmission and the probabilistic nature of Bell measurement causing exponential scaling in time and resource with distance. To overcome these difficulties, while conventional quantum repeaters require matter-based operations with long-lived quantum memories, recent proposals have employed encoded multiple photons in entanglement, providing an alternative way for scalability. In pursuing scalable quantum communications, naturally arising questions are thus whether any ultimate limit exists in all-optical scalability and whether and how it can be achieved. Motivated by these questions, we derive the fundamental limits of the efficiency and loss to...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
The problem of distributing a secret key by quantum channels is one of the preeminent problems in qu...
Modern fiber-optic networks leverage massive parallelization of communications channels in the spect...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
Quantum communications capacity using direct transmission over length-L optical fiber scales as R∼e-...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
We present a resource-performance tradeoff of an all-optical quantum repeater that uses photon sourc...
Quantum network applications like distributed quantum computing and quantum secret sharing present a...
The quantum internet, when finally deployed, will enable a plethora of new applications such as theo...
We present an efficient architecture for quantum repeaters based on single-photon sources in combina...
Le déploiement de réseaux de communication quantique représente un défi auquel cette thèse apporte d...
Surpassing the repeaterless bound is a crucial task on the way towards realizing long-distance quant...
Quantum communication is based on the generation of quantum states and exploitation of quantum resou...
Quantum communication holds a promise for absolutely secure transmission of secret messages and fait...
Quantum repeaters enable long-range quantum communication in the presence of attenuation. Here we pr...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
The problem of distributing a secret key by quantum channels is one of the preeminent problems in qu...
Modern fiber-optic networks leverage massive parallelization of communications channels in the spect...
The distribution of quantum states over long distances is limited by photon loss. Straightforward am...
Quantum communications capacity using direct transmission over length-L optical fiber scales as R∼e-...
In quantum mechanics, a fundamental law prevents quantum communications to simultaneously achieve hi...
We present a resource-performance tradeoff of an all-optical quantum repeater that uses photon sourc...
Quantum network applications like distributed quantum computing and quantum secret sharing present a...
The quantum internet, when finally deployed, will enable a plethora of new applications such as theo...
We present an efficient architecture for quantum repeaters based on single-photon sources in combina...
Le déploiement de réseaux de communication quantique représente un défi auquel cette thèse apporte d...
Surpassing the repeaterless bound is a crucial task on the way towards realizing long-distance quant...
Quantum communication is based on the generation of quantum states and exploitation of quantum resou...
Quantum communication holds a promise for absolutely secure transmission of secret messages and fait...
Quantum repeaters enable long-range quantum communication in the presence of attenuation. Here we pr...
Entangled coherent states can be prepared remotely by subtracting non-locally a single photon from t...
The problem of distributing a secret key by quantum channels is one of the preeminent problems in qu...
Modern fiber-optic networks leverage massive parallelization of communications channels in the spect...