most citedPractical blueprint for low-depth photonic quantum computing with quantum dots

3 citations · 4 across the 2 of their papers we have counts for

collaborators

5 papers

quant-ph20261 cited

Fusion-based implementation of qLDPC codes with quantum emitters

Susan X. Chen, Matthias C. Löbl, Ming Lai Chan +2

Quantum low-density parity check (qLDPC) codes offer higher encoding rate than topological codes, e.g. surface codes, making them favourable for practical, fault-tolerant quantum c…

quant-ph20263 cited

Practical blueprint for low-depth photonic quantum computing with quantum dots

Ming Lai Chan, Aliki Anna Capatos, Peter Lodahl +2

Fusion-based quantum computing is an attractive model for fault-tolerant computation based on photonics requiring only finite-sized entangled resource states followed by linear-opt…

quant-ph2025

Transforming graph states via Bell state measurements

Matthias C. Löbl, Love A. Pettersson, Stefano Paesani +1

Graph states are key resources for measurement-based quantum computing, which is particularly promising for photonic systems. Fusions are probabilistic Bell state measurements, mea…

quant-ph2025

Tailoring fusion-based photonic quantum computing schemes to quantum emitters

Ming Lai Chan, Thomas J. Bell, Love A. Pettersson +4

Fusion-based quantum computation is a promising quantum computing model where small-sized photonic resource states are simultaneously entangled and measured by fusion gates. Such o…

quant-ph2025

Generating graph states with a single quantum emitter and the minimum number of fusions

Matthias C. Löbl, Love A. Pettersson, Andrew Jena +3

Graph states are the key resources for measurement- and fusion-based quantum computing with photons, yet their creation is experimentally challenging. We optimize a hybrid graph-st…