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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…
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…
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…
Efficient percolation simulations for lossy photonic fusion networks
Matthias C. Löbl, Stefano Paesani, Anders S. Sørensen
The study of percolation phenomena has various applications ranging from social networks or materials science to quantum information. The most common percolation models are bond- o…