Quantum repeaters: From quantum networks to the quantum internet
A quantum internet is the holy grail of quantum information processing, enabling the
deployment of a broad range of quantum technologies and protocols on a global scale …
deployment of a broad range of quantum technologies and protocols on a global scale …
[HTML][HTML] A spin-optical quantum computing architecture
We introduce an adaptable and modular hybrid architecture designed for fault-tolerant
quantum computing. It combines quantum emitters and linear-optical entangling gates to …
quantum computing. It combines quantum emitters and linear-optical entangling gates to …
Deterministic generation of concatenated graph codes from quantum emitters
Photon loss is the dominant noise mechanism in photonic quantum technologies. Designing
fault-tolerant schemes with high tolerance to loss is thus a central challenge in scaling …
fault-tolerant schemes with high tolerance to loss is thus a central challenge in scaling …
Flexible entangled-state generation in linear optics
Fault-tolerant quantum computation can be achieved by creating constant-sized, entangled
resource states and performing entangling measurements on subsets of their qubits. Linear …
resource states and performing entangling measurements on subsets of their qubits. Linear …
Increasing error tolerance in quantum computers with dynamic bias arrangement
Many quantum operations are expected to exhibit bias in the structure of their errors. Recent
works have shown that a fixed bias can be exploited to improve error tolerance by statically …
works have shown that a fixed bias can be exploited to improve error tolerance by statically …
Optimization complexity and resource minimization of emitter-based photonic graph state generation protocols
Photonic graph states are important for measurement-and fusion-based quantum
computing, quantum networks, and sensing. They can in principle be generated …
computing, quantum networks, and sensing. They can in principle be generated …
Hybrid Approach to Mitigate Errors in Linear Photonic Bell-State Measurement for Quantum Interconnects
Optical quantum information processing relies critically on Bell-state measurement, a
ubiquitous operation for quantum communication and computing. Its practical realization …
ubiquitous operation for quantum communication and computing. Its practical realization …
Analysis of optical loss thresholds in the fusion-based quantum computing architecture
A Melkozerov, A Avanesov, I Dyakonov… - arxiv preprint arxiv …, 2024 - arxiv.org
Bell state measurements (BSM) play a significant role in quantum information and quantum
computing, in particular, in fusion-based quantum computing (FBQC). The FBQC model is a …
computing, in particular, in fusion-based quantum computing (FBQC). The FBQC model is a …
Simple rules for two-photon state preparation with linear optics
Entangling photons is a critical challenge for photonic quantum information processing:
entanglement is a crucial resource for quantum communication and computation but can …
entanglement is a crucial resource for quantum communication and computation but can …
Boosted quantum teleportation
SE D'Aurelio, MJ Bayerbach, S Barz - arxiv preprint arxiv:2406.05182, 2024 - arxiv.org
Quantum teleportation has proven to be fundamental for many quantum information and
communication processes. The core concept can be exploited in many tasks, from the …
communication processes. The core concept can be exploited in many tasks, from the …